2000年以降について掲載しています。
2026年
[289]
“Infrared and Ultraviolet Spectra of the Monohydrated N -Methyl-Dopamine–Methylation Effect on Structure and Excited State Dynamics”
The Journal of Physical Chemistry A130(1), 80-87 (2026). Link
2025年
[288]
“The Deprotonation Sites of Gas Phase Uridine and Pseudouridine: Implications for mRNA Vaccines”
The Journal of Physical Chemistry Letters16(42), 10945-10951 (2025). Link
[287]
“The Path from Sequestration to Hydration: Why Na+ Takes a Unique Route with the Ionophore, Beauvericin”
The Journal of Physical Chemistry A129(35), 8101-8109 (2025). Link
[286]
“i-Motif DNA in isolated hemiprotonated cytosine dimers, studied using IR spectroscopy and theoretical calculations”
Physical Chemistry Chemical Physics27(19), 9980-9990 (2025). Link
[285]
“Enantioselective Complexation of Protonated Tyrosine by a Chiral Crown-ether: The Nature of the Hydrogen Bonds Makes the Difference”
Chemphyschem26(5), e202400880 (2025). Link
[284]
“Is Tl+ an Analogue of K+? IR Spectroscopy of Tl+ and a Key Peptide of the Selectivity Filter in K+ Channels”
The Journal of Physical Chemistry Letters16(33), 8621-8626 (2025). Link
[283]
“Unbuckling the 18-Crown-6 Ether Belt Around Metal Ions: Forging the Connection to the Condensed Phase”
Journal of the American Chemical Society147(1), 45-50 (2025). Link
[282]
“The Nicotine-Tryptophan Dimer: Probing the Principal Interaction of Nicotine with the Nicotinic Acetylcholine Receptor (nAChR), the Binding Pocket in the Human Brain”
Journal of the American Chemical Society147(17), 14043-14047 (2025). Link
[281]
“Probing the Triplet State by Cryogenic Ion Trap IR Spectroscopy horizontal line Application to Protonated Lumiflavin”
The Journal of Physical Chemistry Letters16(46), 12514-12519 (2025). Link
[280]
“Optical and Infrared Spectroscopy of Lumiflavin Protomers in a Cryogenic Ion Trap”
The Journal of Physical Chemistry A129(24), 5245-5250 (2025). Link
[279]
“UV and IR spectroscopy of singly protonated DIYETDYYR, a tryptic peptide from the regulatory loop of insulin receptor”
Bulletin of the Korean Chemical Society46(12), 1212-1219 (2025). Link
[278]
“Structural Evolution of Protonated Phenylalanine Induced by Stepwise Hydration”
The Journal of Physical Chemistry A129(40), 9271-9278 (2025). Link
2024年
[277]
“Releasing Preferentially Sequestered Na+ from Its Confinement by Beauvericin: A Single Water Molecule is the Accomplice”
The Journal of Physical Chemistry A128(42), 9159-9166 (2024). Link
[276]
“Micro Solvation Effect of Methanol on Excited-State Dynamics of Protonated Tryptophan and Dopamine”
The Journal of Physical Chemistry A128(30), 6208-6215 (2024). Link
[275]
“Affinity of Nicotinoids to a Model Nicotinic Acetylcholine Receptor (nAChR) Binding Pocket in the Human Brain”
The Journal of Physical Chemistry B128(19), 4577-4589 (2024). Link
[274]
“The Gas Phase Protonation Sites of Six Naturally Occurring Nicotinoids”
Journal of Physical Chemistry Letters15(27), 6966-6973 (2024). Link
[273]
“Water-Induced Dissociative Mechanism of Carboxylate and Divalent Calcium Ions Revealed by IR Laser Spectroscopy”
The Journal of Physical Chemistry Letters15(36), 9295-9300 (2024). Link
[272]
“Transition from vehicle to Grotthuss proton transfer in a nanosized flask: Cryogenic ion spectroscopy of protonated p-aminobenzoic acid solvated with D2O”
Chemical Science15(8), 2725-2730 (2024). Link
[271]
“Switching of Protonation Sites in Hydrated Nicotine via a Grotthuss Mechanism”
Journal of the American Chemical Society146(5), 3023-3030 (2024). Link
[270]
“Conformational preference of 2-(4-methoxyphenyl)ethanol studied by supersonic jet spectroscopy: Intramolecular OH/π interaction ”
The Journal of Chemical Physics160(2), 024303 (2024). Link
2023年
[269]
“Cryogenic Ion Spectroscopy of Protonated and Sodiated Methyladenine Derivatives”
The Journal of Physical Chemistry Letters127(11), 2472-2480 (2023). Link
[268]
“Electronic and vibrational spectroscopies of aromatic clusters with He in a supersonic jet: The case of neutral and cationic phenol–He3 (n = 1 and 2)”
The Journal of Chemical Physics159(13), 134303 (2023). Link
[267]
“Infrared Spectra of Beauvericin-Alkaline Earth Metal Ion Complexes─Ion Preference to Physiological Ions”
The Journal of Physical Chemistry A127(34), 7115-7120 (2023). Link
[266]
“Stepwise hydration of [CH3COOMg]+ studied by cold ion trap infrared spectroscopy: insights into interactions in the magnesium channel selection filters”
Physical Chemistry Chemical Physics25(35), 23923-23928 (2023). Link
[265]
“Does Chiral Sensitivity of a Structure Depend on the Metal Core? Alkali Ion Complexes of Cyclo(Tyr-Tyr)”
ChemPhysChem24(18), e202300172 (2023). Link
[264]
“Hydration Rearrangement in the 4-Aminobenzonitrile−(H2O)2 Cluster Induced by Photoionization: The Effect of Solvent-Solvent Interactions”
Chemisry A European Journal29(44), e202301128 (2023). Link
[263]
“Ion Recognition beyond Size Matching: Cooperative Hydration Effect on the K+ Selectivity of Valinomycin over Na+ Revealed by Cryogenic Double Ion Trap Infrared Spectroscopy”
The Journal of Physical Chemistry Letters14(24), 5567-5572 (2023). Link
[262]
“Can Ag+ Permeate through a Potassium Ion Channel? A Bottom-Up Approach by Infrared Spectroscopy of the Ag+ Complex with the Partial Peptide of a Selectivity Filter”
The Journal of Physical Chemistry Letters14(11), 2886-2890 (2023). Link
[261]
“Conformer-selective photodynamics of TrpH+-H2O”
ChemPhysChem24(2), e202200561 (2023). Link
[260]
“Thermodynamics and kinetics of a partial peptide of K+ channels: DFT transition state calculations coupled with temperature-controlled gas phase laser spectroscopy”
Bulletin of the Chemical Society of Japan96(3), 310-317 (2023). Link
[259]
“Hydration-induced protomer switching in p-aminobenzoic acid studied by double ion trap infrared spectroscopy”
Physical Chemistry Chemical Physics24(6), 4481-4488 (2023). Link
[258]
“Cation-responsive cavity expansion of valinomycin revealed by cryogenic ion trap infrared spectroscopy ”
Physical Chemistry Chemical Physics25(2), 1075-1080 (2023). Link
2022年
[257]
“Na+ selective binding by beauvericin and its mechanism studied by mass-coupled cold ion trap infrared spectroscopy”
The Journal of Physical Chemistry Letters13(48), 11330-111334 (2022). Link
[256]
“Ultraviolet and infrared spectra of mono-, di- and tri-hydrated clusters of protonated noradrenaline – Solvation and conformational variations”
Chemical Physics Letters806, 140014 (2022). Link
[255]
“Do Stereochemical Effects Overcome a Charge-induced Perturbation in Isolated Protonated cyclo(Tyr-Tyr)?”
The Journal of Physical Chemistry A126(37), 6387-6394 (2022). Link
[254]
“Structure of Gas Phase Monohydrated Nicotine: Implications for Nicotine’s Native Structure in the Acetylcholine Binding Protein”
Journal of the Americal Chemical Society144(37), 16698-16702 (2022). Link
[253]
“A bottom-up approach to the ion recognition mechanism of K+ channels from laser spectroscopy of hydrated partial peptide–alkali metal ion complexes”
Physical Chemistry Chemical Physics24(35), 20803-20812 (2022). Link
[252]
“Stepwise dissociation of ion pairs by water molecules: cation-dependent separation mechanisms between carboxylate and alkali-earth metal ions”
Physical Chemistry Chemical Physics24(20), 12121-12125 (2022). Link
[251]
“Excited state dynamics of protonated dopamine: Hydration and conformation effects”
Physical Chemistry Chemical Physics24(18), 10737-10744 (2022). Link
[250]
“Collision-assisted stripping for determination of microsolvation-dependent protonation sites in hydrated clusters by cryogenic ion trap infrared spectroscopy: the case of benzocaineH+(H2O)n”
Physical Chemistry Chemical Physics24(10), 5774-5779 (2022). Link
[249]
“Gas phase protonated nicotine is a mixture of pyridine- and pyrrolidine-protonated conformers: implications for its native structure in the nicotinic acetylcholine receptor”
Physical Chemistry Chemical Physics24(10), 5786-5793 (2022). Link
[248]
“Real-time observation of photoionization-induced water migration dynamics in 4-methylformanilide–water by picosecond time-resolved infrared spectroscopy and ab initio molecular dynamics simulations”
Physical Chemistry Chemical Physics24(1), 73-85 (2022). Link
2021年
[247]
“Cryogenic ion spectroscopy of adenine complexes containing alkali metal cations”
Physical Chemistry Chemical Physics23(11), 6783-6790 (2021). Link
[246]
“Isomer-selective spectroscopy and dynamics of phenol-Arn(n ≤ 5) clusters”
The Journal of Physical Chemistry A125(46), 9969-9981 (2021). Link
[245]
“Double Ion Trap Laser Spectroscopy of Alkali Metal Ion Complexes with a Partial Peptide of the Selectivity Filter in K+ Channels─Temperature Effect and Barrier for Conformational Conversions”
The Journal of Physical Chemistry A125(44), 9609-9618 (2021). Link
[244]
“Hydration-controlled excited-state relaxation in protonated dopamine studied by cryogenic ion spectroscopy”
The Journal of Chemical Physics155(15), 151101 (2021). Link
[243]
“Distribution of trace impurities in microvolumes and analysis of concentration using laser sputtered neutral mass spectrometry”
The Journal of Vacuum Science & Technology B39(6), 064002 (2021). Link
[242]
“Potassium and Sodium Ions Complexes with a Partial Peptide of the Selectivity Filter in K+ Channels Studied by Cold Ion Trap Infrared Spectroscopy: Effect of Hydration”
Physical Chemistry Chemical Physics23(21), 12045-12050 (2021). Link
[241]
“Cryogenic ion spectroscopy of adenine complexes containing alkali metal cations”
Physical Chemistry Chemical Physics23(11), 6783-6790 (2021). Link
[240]
“Revealing the role of excited state proton transfer (ESPT) in excited state hydrogen transfer (ESHT): systematic study in phenol-(NH3)n clusters”
Chemical Science12(11), 3836-3856 (2021). Link
[239]
“Rethinking Ion Transport by Ionophores: Experimental and Computational Investigation of Single Water Hydration in Valinomycin-K+ Complexes”
The Journal of Physical Chemistry Letters12(6), 1754-1758 (2021). Link
2020年
[238]
“Chiral discrimination between tyrosine and β-cyclodextrin revealed by cryogenic ion trap infrared spectroscopy”
Physical Chemistry Chemical Physics22(43), 24887-24894 (2020). Link
[237]
“Cryogenic Ion Spectroscopy of a Singly Protonated Peptide DYYVVR: Locating Phosphorylation Sites of a Kinase Domain”
The Journal of Physical Chemistry Letters11(17), 7103-7108 (2020). Link
[236]
“Excited-state proton transfer in protonated adrenaline revealed by cryogenic UV photodissociation spectroscopy”
Physical Chemistry Chemical Physics22(20), 11498-11507 (2020). Link
[235]
“Improvement of ionization yield in sputtered neutral mass spectrometry using pulsed infrared and ultraviolet lasers”
Journal of Vacuum Science & Technology B38(3), 034011 (2020). Link
[234]
“Excited state hydrogen transfer dynamics in phenol–(NH3)2 studied by picosecond UV-near IR-UV time-resolved spectroscopy”
Physical Chemistry Chemical Physics22(10), 5740-5748 (2020). Link
[233]
“Alkali and alkaline earth metal ions complexes with a partial peptide of the selectivity filter in K+ channels studied by a cold ion trap infrared spectroscopy”
ChemPhysChem21(8), 712-724 (2020). Link
2019年
[232]
“Ionization-Induced π → H Site Switching in Resorcinol–Arn (n = 1 and 2) Clusters Probed by Infrared Spectroscopy”
The Journal of Physical Chemistry A123(32), 6828-6839 (2019). Link
[231]
“Probing the selectivity of Li+ and Na+ cations on noradrenaline at the molecular level”
Faraday Discussions217, 396-413 (2019). Link
[230]
“Can the Partial Peptide SIVSF of the β2-Adrenergic Receptor Recognize Chirality of the Epinephrine Neurotransmitter?”
The Journal of Physical Chemistry Letters10(10), 2470-2474 (2019). Link
[229]
“Ion-peptide interactions between alkali metal ions and a termini-protected dipeptide; Modeling a portion of the selectivity filter in K+ channels”
Physical Chemistry Chemical Physics21(2), 561-571 (2019). Link
[221]
“Cation-Size-Dependent Conformational Locking of Glutamic Acid by Alkali Ions: Infrared Photodissociation Spectroscopy of Cryogenic Ions”
The Journal of Physical Chemistry B122(8), 2295–2306 (2019). Link
2018年
[228]
“Probing chirality recognition of protonated glutamic acid dimers by gas-phase vibrational spectroscopy and first-principles simulations”
Physical Chemistry Chemical Physics20(45), 28452-28464 (2018). Link
[227]
“Electron-proton transfer mechanism of excited-state hydrogen transfer in phenol–(NH3)n (n = 5) studied by delayed ionization detected femtosecond time-resolved NIR spectroscopy”
Chemical Physics515, 580-585 (2018). Link
[226]
“Entropic effects make a more tightly folded conformer of a β-amino acid less stable: UV-UV hole burning and IR dip spectroscopy of L-β3-homotryptophan using a laser desorption supersonic jet technique”
Physical Chemistry Chemical Physics20(30), 19979–19986 (2018). Link
[225]
“Stereochemistry-dependent structure of hydrogen-bonded protonated dimers: the case of 1-amino-2-indanol”
Physical Chemistry Chemical Physics20(18), 12430–12443 (2018). Link
[224]
“Molecular Recognition by a Short Partial Peptide of the Adrenergic Receptor: A Bottom-Up Approach”
Angewandte Chemie International Edition57(20), 5626–5629 (2018). Link
[223]
“Bevel depth profiling by high-spatial-resolution sputtered neutral mass spectrometry with laser postionization”
Journal of Vacuum Science & Technology B36(3), 03F133 (2018). Link
[222]
“Matrix and element dependences of useful yield in Si and SiO2 matrices using laser-ionization sputtered neutral mass spectrometry”
Journal of Vacuum Science & Technology B36(3), 03F128 (2018). Link
[220]
“A theoretical study on the size-dependence of ground-state proton transfer in phenol-ammonia clusters”
Physical Chemistry Chemical Physics20(5), 3265–3276 (2018). Link
[219]
“Stepwise microhydration of aromatic amide cations: water solvation networks revealed by the infrared spectra of acetanilide+–(H2O)n clusters (n ≤ 3)”
Physical Chemistry Chemical Physics20(5), 3148–3164 (2018). Link
2011年
[139]
“Mass analyzed threshold ionization spectra of phenol···Ar2: ionization energy and cation intermolecular vibrational frequencies”
Physical Chemistry Chemical Physics13(13), 6071–6076 (2011). Link
[138]
“Photoionization-induced large-amplitude pendular motion in phenol+–Kr”
Physical Chemistry Chemical Physics13(7), 2744–2747 (2011). Link
[137]
“Ionization-induced π → H site switching dynamics in phenol–Ar3”
Physical Chemistry Chemical Physics13(6), 2409–2416 (2011). Link
[136]
“Detailed analysis of diesel vehicle exhaust emissions: Nitrogen oxides, hydrocarbons and particulate size distributions”
Proceedings of the Combustion Institute33(2), 2895–2902 (2011). Link
2010年
[135]
“Structural Evolution of (1-NpOH)n Clusters Studied by R2PI and IR Dip Spectroscopies”
The Journal of Physical Chemistry A114(42), 1210–11215 (2010). Link
[134]
“Excited-State Triple-Proton Transfer in 7-zaindole(H2O)2 and Reaction Path Studied by Electronic Spectroscopy in the Gas Phase and Quantum Chemical Calculations”
The Journal of Physical Chemistry A114(42), 11161–11166 (2010). Link
[133]
“Fragmentation Energetics of the Phenol+···Ar3 Cation Cluster”
The Journal of Physical Chemistry A114(42), 11139–11143 (2010). Link
[132]
“Dissociation energetics of the phenol+···Ar2 cluster ion: The role of π → H isomerization”
The Journal of Chemical Physics133(15), 154308-1–5 (2010). Link
[131]
“Tribute to Klaus Müller-Dethlefs”
The Journal of Physical Chemistry A14(42), 11027 (2010). Link
[130]
“2波長レーザー分光法を用いた赤外超解像イメージ測定法”
分光研究59(5), 233–234 (2010). Link
[129]
“レーザーイオン化/収束イオンビームによる単一ナノ粒子の履歴解析装置”
化学と工業63(10), 802–803 (2010). Link
[128]
“Excited state hydrogen transfer dynamics in substituted phenols and their complexes with ammonia: ππ-πσ energy gap propensity and ortho-substitution effect”
The Journal of Chemical Physics133(12), 124313-1–12 (2010). Link
[127]
“赤外顕微鏡で生きたままの細胞を観察する”
化学と工業63(9), 740 (2010). Link
[126]
“レーザー多光子イオン化法を用いたモード走行中自動車排気ガスに関する個別成分のリアルタイム分析とOHラジカル反応性の評価”
大気環境学会誌45(5), 205–211 (2010). Link
[125]
“Dual Emission Caused by Ring Inversion Isomerization of a 4-Methyl-2-pyridyl-pyrimidine Copper(I) Complex”
Journal of the American Chemical Society132(28), 9579–9581 (2010). Link
[124]
“Infrared imaging of an A549 cultured cell by a vibrational sum-frequency generation detected infrared super-resolution microscope”
Optics Express18(13), 13402–13406 (2010). Link
[123]
“Evidence for Catechol Ring- Induced Conformational Restriction in Neurotransmitters”
The Journal of Physical Chemistry Letters1(7), 1130–1133 (2010). Link
[122]
“Development of a Non-scanning Vibrational Sum-Frequency Generation Detected Infrared Super-Resolution Microscope and Its Application to Biological Cells”
Applied Spectroscopy64(3), 275–281 (2010). Link
[121]
“Simultaneous Measurements of Aromatic Hydrocarbons in Exhaust using a Laser Ionization Method”
SAE International Journal of Engines,2(2), 226–234 (2010). Link
[120]
“Spectroscopic Studies of a Sensory Rhodopsin I Homologue from the Archaeon Haloarcula vallismortis”
Biochemistry49(6), 1183–1190 (2010). Link
[119]
“Visible-super-resolution infrared microscopy using saturated transient fluorescence detected infrared spectroscopy”
Optics Communications283(3), 509–514 (2010). Link
[118]
“Measurement of adiabatic ionization energies of the rotational isomers of n-propylbenzene and m-fluorophenol by direct VUV laser photoionization”
Chemical Physics Letters485(1-3), 31–35 (2010). Link
[117]
“Corrigendum to “Effects of Chloride Ion Binding on the Photochemical Properties of Salinibacter Sensory Rhodopsin I” [J. Mol. Biol. (2009) 392, 48–61]”
Journal of Molecular Biology395(1), 220–221 (2010). Link
2009年
[116]
“Real-time Analysis of Benzene in Exhaust Gas from Driving Automobiles Using Jet-REMPI Method”
SAE Technical papers, 2009-01-2740 (2009). Link
[115]
“Simultaneous Measurements of Aromatic Hydrocarbons in Exhaust using a Laser Ionization Method”
SAE Technical papers, 2009-01-2742 (2009). Link
[114]
“Characterization of a Signaling Complex Composed of Sensory Rhodopsin I and Its Cognate Transducer Protein from the Eubacterium Salinibacter ruber”
Biochemistry48(42), 10136–10145 (2009). Link
[113]
“細胞内部可視化を目指した赤外超解像顕微分光法の開発”
レーザー研究37(10), 729–733 (2009). Link
[112]
“Effects of Chloride Ion Binding on the Photochemical Properties of Salinibacter Sensory Rhodopsin I”
Journal of Molecular Biology392(1), 48–62 (2009). Link
[111]
“レーザーイオン化法による自動車排出ガスのリアルタイム質量分析(第2報) ―モード走行時の排出傾向― // Real-time Mass Spectrometry of Exhaust Gas from Automobiles Utilizing Laser Ionization (Second Report) ―Emission Trends in Driving Mode―”
自動車技術会論文集40(5), 1339–1344 (2009). Link
[110]
“レーザーイオン化 法による自動車排出ガスのリアルタイム質量分析(第1報) ―多成分同時分析装置の開発― // Real-time Mass Spectrometry of Exhaust Gas from Automobiles Utilizing Laser Ionization (First Report) ―Development of Simultaneous Analyzer of Multicomponents―”
自動車技術会論文集40(5), 1333–1338 (2009). Link
[109]
“Two-point-separation in a sub-micron nonscanning IR super-resolution microscope based on transient fluorescence detected IR spectroscopy”
Optics Express17(14), 2013–12018 (2009). Link
[108]
“過渡蛍光検出赤外分光による超解像イメージング”
光学38(7), 344–349 (2009). Link
[107]
“Simultaneous Measurements for Multicomponents of VOCs and PAHs in Diesel Exhaust Gas using a Laser Ionization Method”
SAE Technical papers, 2009-01-1842 (2009). Link
[106]
“Time-resolved measurements of low concentration aromatic hydrocarbons in diesel exhaust using a resonance enhanced multi-photon ionization method”
Internatinal Journal of Engine research,10(6), 409–417 (2009). Link
[105]
“Isomer selective infrared spectroscopy of supersonically cooled cis- and trans-N-phenylamides in the region from amide band to NH stretching vibration”
Physical Chemistry Chemical Physics11(29), 6098–6106 (2009). Link
[104]
“IR spectra of resorcinol+–Arn cluster cations (n = 1, 2): Evidence for photoionization-induced π → H isomerization”
Chemical Physics Letters474(1-3), 7–12 (2009). Link
[103]
“蛍光検出を利用した赤外超解像顕微鏡法によるA549細胞の測定”
日本レーザー医学会誌30(4), 427–434 (2009). Link
[102]
“高出力,広帯域波長可変,高分解能中赤外光線の開発と赤外・紫外二重共鳴分光への応用””
レーザー研究37(4), 296–303 (2009). Link
[101]
“Functional Imaging of a Single Cell: Far-field Infrared Super-resolution Microscopy Using Auto-fluorescence Detection”
Proceedings of SPIE (Society of Photographic Instrumentation Engineers)7182, 71820G-1–6 (2009). Link
[100]
“Plugging a Molecular Wire into Photosystem Ι: Reconstitution of the Photoelectric Conversion System on a Gold Electrode”
Angewandte Chemie International Edition48(9), 1585–1587 (2009). Link
[99]
“In Situ, Fast-response, Molecular-selective Methods for Measuring Emission Factors of Volatile Organic Compounds (VOCs) into the Atmosphere”
Chemistry Letters38(1), 74–75 (2009). Link
2008年
[98]
“Vibrational Signature of the Conformers in Tyramine Studied by IR Dip and Dispersed Fluorescence Spectroscopies”
The Journal of Physical Chemistry A112(51), 13463–13469 (2008). Link
[97]
“The most stable conformer of benzyl alcohol”
Chemical Physics Letters466(1-3), 21–26 (2008). Link
[96]
“Resonance Enhanced Multiphoton Ionization Spectroscopy of the S1–S0 Transition of Benzo[e]pyrene for Real-time Analysis”
Chemistry Letters37(12), 1280–1281 (2008). Link
[95]
“Synthesis of Pd complexes directly linked to the light-absorbing [(bpy)3Ru]²+ unit and their photochemical reactions toward styrenes”
Dalton Transactions2008(47), 6709–6723 (2008). Link
[94]
“Electronic spectra of 7-azaindole/ammonia clusters and their photochemical reactivity”
The Journal of Chemical Physics129(10), 104311-1–10 (2008). Link
[93]
“2波長レーザー分光に基づく超解像光学顕微鏡の開発”
Japan Intense Light Field Science Society (JILS) Newsletter44, 1–18 (2008). Link
[92]
“光の研究コミュニティ―技術進展を支える光関連研究会/グループ― 第60回(社)日本分光学会 生細胞分光部会”
OPTRONICS27(320), 144–145 (2008). Link
[91]
“超臨界流体ジェット分光法の開発と高次系分子分光への応用”
分光研究57(4), 158–167 (2008). Link
[90]
“High-energy, broadly tunable, narrow-bandwidth mid-infrared optical parametric system pumped by quasi-phase-matched devices”
Optics Letters33(15), 1699–1701 (2008). Link
[89]
“Real-Time and Direct Measurement of Pollutants in Exhaust Gas Utilizing Supersonic Jet/Resonance Enhanced Multi-Photon Ionization”
SAE Technical Papers, 2008-01-0761 (2008). Link
[88]
“Compact fluorescence depletion microscope system using an integrated optical element”
Optics Communications281(7), 1850–1854 (2008). Link
[87]
“環境負荷物質分析のための高感度オンラインレーザーイオン化質量分析装置の開発”
分析化学57(4), 227–237 (2008). Link
[86]
“基礎研究者がする応用研究”
Molecular Science2, A0026 (2008). Link
[85]
“超高感度レーザー分析の最前線=分子選択的リアルタイム高感度分析=”
光アライアンス19(3), 48–52 (2008). Link
[84]
“Cell imaging by transient fluorescence detected infrared microscopy”
Proceedings of SPIE (Society of Photographic Instrumentation Engineers)6853, 685307-1–7 (2008). Link
[83]
“2波長レーザー分光法に基づく超解像光学顕微鏡の開発”
機能材料28(2), 22–27 (2008). Link
[82]
“2波長超解像光学顕微鏡”
化学と工業61(2), 115–118 (2008). Link
[81]
“共鳴多光子イオン化法を用いた排出ガス中の微量成分の前処理なしリアルタイム分析(2) ―モード走行時の排出量変動― // Real-time and Direct Analysis of Pollutants in Exhaust Gas Utilizing Resonance Enhanced multi-photon ionization (2) ―Variations of Emissions Under Test Driving Modes―”
Review of Automotive Engineering29(1), 123–125 (2008).
[80]
““共鳴多光子イオン化法を用いた排出ガス中の微量成分の前処理なしリアルタイム分析(1) ―実ガス定量システムの確立― // Real-time and Direct Analysis of Pollutants in Exhaust Gas Utilizing Resonance Enhanced multi-photon ionization (1) ―Monitoring System for Realgas Sample―”
Review of Automotive Engineering29(1), 119–121 (2008).
2007年
[79]
“Hydrogen transfer dynamics in a photoexcited phenol/ammonia (1:3) cluster studied by picosecond time-resolved UV-IR-UV ion dip spectroscopy”
The Journal of Chemical Physics127(23), 234304-1–8 (2007). Link
[78]
“生体-分子電線-半導体”融合による光受容素子 // Bio-conjugate Photosensitive Nanomaterial”
真空 Journal of the Vacuum Society of Japan50(12), 745–751 (2007). Link
[77]
“超音速分子ジェット多光子共鳴イオン化質量分析装置を用いる石炭加熱時のナフタレン発生挙動の観察”
分析化学56(12), 1133–1139 (2007). Link
[76]
“微量分子の高感度測定技術 –レーザーイオン化分析装置”
NIPPON STEEL MONTHLY173, 7–8 (2007). Link
[75]
“High-energy, narrow-bandwidth periodically poled Mg-doped LiNbO3 optical parametric oscillator with a volume Bragg grating”
Optics Letters32(20), 2996–2998 (2007). Link
[74]
“Picosecond Time-resolved Infrared Imaging by a Nonscanning Two-color Infrared Super-resolution Microscope”
Chemistry Letters36(11), 1380–1381 (2007). Link
[73]
“IR signature of the photoionization-induced hydrophobic → hydrophilic site switching in phenol–Arn clusters”
The Journal of Chemical Physics,127(11), 114307-1–11 (2007). Link
[72]
“Investigation of the center intensity of first- and second-order Laguerre-Gaussian beams with linear and circular polarization”
Optics Letters32(16), 2357–2359 (2007). Link
[71]
“Hole-Burning Spectra of Phenol–Arn (n = 1, 2) Clusters: Resolution of the Isomer Issue”
The Journal of Physical Chemistry A111(31), 7569–7575 (2007). Link
[70]
“IR spectra of phenol+–Krn cluster cations (n = 1, 2): Evidence for photoionization-induced π → H isomerization”
Chemical Physics Letters443(4-6), 227–231 (2007). Link
[69]
“Vibrational OH-Stretching Overtone Spectroscopy of Jet-Cooled Resorcinol and Hydroquinone Rotamers”
The Journal of Physical Chemistry A111(27), 6028–6033 (2007). Link
[68]
“Bio-photosensor: Cyanobacterial photosystem I coupled with transistor via molecular wire”
Biochimica et Biophysica Acta - Bioenergetics1767(6), 653–659 (2007). Link
[67]
“Far-field infrared super-resolution microscopy using picosecond time-resolved transient fluorescence detected IR spectroscopy”
Chemical Physics Letters439(1-3), 171–176 (2007). Link
[66]
“On polarization effects in fluorescence depletion microscopy”
Optics Communications272(1), 263–268 (2007). Link
[65]
“共鳴多光子イオン化法を用いたオンサイト・リアルタイム質量分析 // On-site and Real-time Mass Spectrometer Utilizing the Resonance Enhanced Multi-photon Ionization Technique”
真空 Journal of the Vacuum Society of Japan50(4), 241–245 (2007). Link
[64]
“Structure of the Jet-Cooled 1-Naphthol Dimer Studied by IR Dip Spectroscopy: Cooperation between the π-π Interaction and the Hydrogen Bonding”
The Journal of Physical Chemistry A111(6), 1001–1005 (2007). Link
[63]
“Measurement of Contrast Transfer Function in Super-Resolution Microscopy Using Two-Color Fluorescence Dip Spectroscopy”
Applied Spectroscopy61(1), 6–10 (2007). Link
[62]
“赤外ファーフィールド超解像顕微鏡”
光技術コンタクト45, 19–23 (2007).
2006年
[61]
“52 mJ narrow-bandwidth degenerated optical parametric system with a large aperture periodically poled MgO:LiNbO3 device”
Optics Letters31(21), 3149–3151 (2006). Link
[60]
“Development of a Supercritical Fluid Jet Technique for Supersonic Jet Laser Spectroscopy of Nonvolatile and Pyrolytic Molecules”
Chemistry Letters35(9), 1044–1045 (2006). Link
[59]
“Theoretical Study on the Structure and the Frequency of Isomers of the Naphthalene dimer”
Jouranl of Chemical Theory and Computation2(4), 1176–1183 (2006). Link
[58]
“Vibrational Overtone Spectroscopy of Phenol and Its Deuterated Isotopomers”
The Journal of Physical Chemistry A110(23), 7345–7354 (2006). Link
[57]
“Construction of super-resolution microscope based on cw laser light source”
Review of Scientific Instruments77(6), 063112-1–8 (2006). Link
[56]
“Highly efficient 1181 nm output from a transversely diode-pumped Nd3+:KGd(WO4)2 self-stimulating Raman laser”
Optics Communications260(2), 675–679 (2006). Link
[55]
“超音速分子ジェット多光分子吸収イオン化質量分析法を基本とする環境負荷物質リアルタイムモニタリング装置の開発 // Development of Real Time Monitoring Apparatus Based on Jet-REMPI Technique for the Determination of Hazardous Organic Compounds”
鉄と鋼,92(4), 262–267 (2006). Link
[54]
“レーザーイオン化質量分析による超微量物質検出”
レーザー研究34(4), 283–288 (2006). Link
[53]
“Analysis of a fluorescence depletion process of Rhodamine 6G in a PMMA matrix induced by nano- and picosecond lasers”
Chemical Physics Letters420(4-6), 410–415 (2006). Link
[52]
“Excited state hydrogen transfer in fluorophenol∙ammonia clusters studied by two-color REMPI spectroscopy”
Physical Chemistry Chemical Physics8(1), 114–121 (2006). Link
2005年
[51]
“Investigation of polarization effects for high-numerical-aperture first-order Laguerre-Gaussian beams by 2D scanning with a single fluorescent microbead”
Optics Express13(26), 10440–10447 (2005). Link
[50]
“2色レーザ光でナノ構造を視る ―2波長ファーフィールド超解像顕微鏡法の開発―”
未来材料5(12), 8–15 (2005).
[49]
“A New, Highly Sensitive Time-of-Flight Mass Spectrometer Consisting of a Flangeon-type Conical Ion Lens System and a Proto-type Daly Detector for Exhaust Gas Analysis Based on the Jet-REMPI Technique”
Analytical Sciences21(8), 991–996 (2005). Link
[48]
“回折限界以下の振動情報を得る ―赤外超解像顕微分光”
化学60(11), 34–38 (2005).
[47]
“Probing Stepwise Complexation in Phenylazomethine Dendrimers by a Metallo-Porphyrin Core”
Journal of the American Chemical Society127(40), 13896–13905 (2005). Link
[46]
“Real-time Observation of Ionization-Induced Hydrophobic → Hydrophilic Switching”
Angewandte Chemie International Edition44(38), 6149–6151 (2005). Link
[45]
“Two-Point Separation in Far-Field Super-Resolution Fluorescence Microscopy Based on Two-Color Fluorescence Dip Spectroscopy, Part I: Experimental Evaluation”
Applied Spectroscopy59(7), 868–872 (2005). Link
[44]
“光合成たんぱく質を用いたバイオフォトセンサー”
応用物理74(7), 924–929 (2005).
[43]
“Nanometer scale marker for fluorescent microscopy”
Review of Scientific Instruments76(7), 073701-1–4 (2005). Link
[42]
“Theoretical investigation of the point-spread function given by super-resolving fluorescence microscopy using two-color fluorescence dip specteoscopy”
Optical Engineering44(3), 033602-1–9 (2005). Link
[41]
“Pulsed field ionization-ZEKE photoelectron spectrum of o-, m- and p-tolunitrile”
Journal of Electron Spectroscopy and Related Phenomena142(3), 15–221 (2005). Link
[40]
“溶液・気相の両面から見た7-アザインドール二量体の振動緩和過程”
分光研究54(3), 163–169 (2005). Link
2004年
[39]
“Generation of a doughnut-shaped beam using a spiral phase plate”
Review of Scientific Instruments75(12), 5131–5135 (2004). Link
[38]
“Vibrational energy relaxation of the 7-azaindole dimer in CCl4 solution studied by picosecond time-resolved transient fluorescence detected IR spectroscopy”
Chemical Physics Letters396(4-6), 298–302 (2004). Link
[37]
“2波長蛍光Dip分光法を用いたファーフィールド超解像顕微鏡の2点分解能評価 // Two-Point-Separation in Far-Field Super-Resolution Fluorescence Microscopy Based on Two-Color Fluorescence Dip Spectroscopy”
表面科学 Journal of the Surface Science Society of Japan25(8), 466–472 (2004). Link
[36]
“光励起:共鳴多光子イオン化法による分子のインタクトイオン化 // Photo-excitation: Intact Ionization of Molecules by Resonance Enhanced Multiphoton Ionization Spectroscopy”
真空 Journal of the Vacuum Society of Japan47(8), 612–617 (2004). Link
[35]
“Vibrational Overtone Spectroscopy of Jet-Cooled Aminophenols as a Probe for Rotational Isomers”
The Journal of Physical Chemistry A108(20), 4420–4427 (2004). Link
[34]
“Formation of doughnut laser beam for super-resolving microscopy using a phase spatial light modulator”
Optical Engineering43(5), 1136–1143 (2004). Link
[33]
“Formation of nano-dots of phenylazomethine dendrimers with Rhodamine 6G on mica”
Polymers for Advanced Technologies15(4), 159–163 (2004). Link
[32]
“Four-color hole burning spectra of phenol/ammonia 1:3 and 1:4 clusters”
The Journal of Chemical Physics120(7), 3215–3220 (2004). Link
2003年
[31]
“Azo-benzene polymer thin-film laser amplifier with grating couplers based on light-induced relief hologram”
Optics Communications228(4-6), 279–283 (2003). Link
[30]
“Two-point-separation in super-resolution fluorescence microscope based on up-conversion fluorescence depletion technique”
Optics Express11(24), 3271–3276 (2003). Link
[29]
“S1–S0 Electronic spectrum of jet-cooled m-aminophenol”
Physical Chemistry Chemical Physics5(22), 5044–5050 (2003). Link
[28]
“Predicted Spatial Resolution of Super-Resolving Fluorescence Microscopy Using Two-Color Fluorescence Dip Spectroscopy”
Applied Spectroscopy57(10), 1312–1316 (2003). Link
[27]
“蛍光Dip分光法の凝集相への応用”
分光研究52(5), 286–287 (2003). Link
[26]
“Photochemistry of phenol–(NH3)n clusters: Solvent effect on a radical cleavage of an OH bond in an electronically excited state and intracluster reactions in the product NH4(NH3)n−1 (n ≤ 5)”
The Journal of Chemical Physics119(10), 5149–5158 (2003). Link
[25]
“2色レーザ光を用いたナノ空間超解像蛍光計測法 // Super-resolution Fluorescence Microscopy in Nano-meter Scale Region Using Two-color Laser Beams”
表面科学 Journal of the Surface Science Society of Japan24(7), 392–399 (2003). Link
[24]
“Far-field super-resolution scanning fluorescence microscope by using up-conversion-depletion technique”
Conference on Lasers and Electro-Optics/Quantum Electronics and Laser Science ConferenceTechnical Digest (Op, paper CTuO4 (2003).
[23]
“Investigation of the fluorescence depletion process in the condensed phase; application to a tryptophan aqueous solution”
Chemical Physics Letters372(5-6), 773–778 (2003). Link
[22]
“Pulsed field ionization-ZEKE spectroscopy of 4-aminobenzonitrile–H2O. Hydrogen-bonding interaction in the amino site”
Physical Chemistry Chemical Physics5(9), 1775–1779 (2003). Link
[21]
“Two-color far-field super-resolution microscope using a doughnut Beam”
Chemical Physics Letters371(5-6), 634–639 (2003). Link
[20]
“Construction of a Picosecond Time-Resolved IR Dip Spectrometer for Studying Structures and Dynamics of Solvated Clusters”
Bulletin of the Chemical Society of Japan76(3), 509–514 (2003). Link
[19]
“Self-stimulating, Transversely Diode-pumped Nd3+:PbWO4 yellow laser”
Advanced Solid-State PhotonicsJ. Zayhowski, ed., V, paper 21 (2003).
2002年
[18]
“Hydrogen transfer in photo-excited phenol/ammonia clusters by UV-IR-UV ion dip spectroscopy and ab initio molecular orbital calculations. II. Vibrational Transitions”
The Journal of Chemical Physics117(15), 7083–7093 (2002). Link
[17]
“Hydrogen transfer in photo-excited phenol/ammonia clusters by UV-IR-UV ion dip spectroscopy and ab initio molecular orbital calculations. I. Electronic Transitions”
The Journal of Chemical Physics117(15), 7077–7082 (2002). Link
[16]
“IR-dip and IR-UV hole-burning spectra of jet-cooled 4-aminobenzonitrile–(H2O)1. Observation of π-type and σ-type hydrogen-bonded conformers in the CN Site”
Chemical Physics283(1-2), 209–219 (2002). Link
[15]
“Picosecond time-resolved nonresonant ionization detected IR spectroscopy on 7-Azaindole dimer”
The European Physcial Journal D20(3), 399–402 (2002). Link
[14]
“The PFI-ZEKE photoelectron spectrum of m-fluorophenol and its aqueous complexes: Comparing intermolecular vibrations in rotational isomers”
Physical Chemistry Chemical Physics4(12), 2534–2538 (2002). Link
[13]
“OH- and CH-Stretching Overtone Spectra of Catechol”
The Journal of Physical Chemistry A106(2), 258–266 (2002). Link
2001年
[12]
“Structure of 1-Naphthol/Alcohol Clusters Studied by IR Dip Spectroscopy and ab Initio Molecular Orbital Calculations”
The Journal of Physical Chemistry A105(44), 10045–10053 (2001). Link
[11]
“Pulsed field ionization zero kinetic energy photoelectron study on methylanisole molecules in a supersonic jet”
Physical Chemistry Chemical Physics3(22), 4889–4897 (2001). Link
[10]
“Picosecond time-resolved infrared spectra of photo-excited phenol–(NH3)3 cluster”
Chemical Physics Letters347(1-3), 87–92 (2001). Link
[9]
“Structure of Hydrogen-Bonded Clusters of 7-Azaindole Studied by IR Dip Spectroscopy and ab Initio Molecular Orbital Calculation”
The Journal of Physical Chemistry A105(41), 9366–9374 (2001). Link
[8]
“Structures of Carbazole–(H2O)n (n = 1–3) Clusters Studied by IR Dip Spectroscopy and a Quantum Chemical Calculation”
The Journal of Physical Chemistry A,105(38), 8651–8657 (2001). Link
[7]
“Electronic and Infrared Spectra of Jet-cooled 4-aminiobenzonitrile–H2O. Change of NH2 from proton acceptor to proton donor by CN substitution”
Chemical Physics Letters341(1-2), 70–76 (2001). Link
2000年
[6]
“Butterfly vibration of the tetrafluorobenzene cation studied by pulsed field ionization-zero kinetic energy photoelectron spectroscopy”
Journal of Electron Spectroscopy and Related Phenomena112(1-3), 241–245 (2000). Link
[5]
“Structure and Dynamics of 9(10H)-Acridone and Its Hydrated Clusters. II. Structural Characterization of Hydrogen-Bonding Networks”
The Journal of Physical Chemistry A104(38), 8649–8659 (2000). Link
[4]
“Internal methyl group rotation in o-cresol studied by pulsed field ionization-ZEKE photoelectron spectroscopy”
Journal of Electron Spectroscopy and Related Phenomena108(1-3), 13–20 (2000). Link
[3]
“Infrared dip spectra of photochemical reaction products in a phenol/ammonia cluster: examination of intracluster hydrogen transfer”
Chemical Physics Letters322(1-2), 27–32 (2000). Link
[2]
“Pulsed field ionization-ZEKE spectroscopy of cresoles and their aqueous complex: Internal rotation of methyl group and intermolecular vibrations”
Faraday Discussions115, 229–243 (2000). Link
[1]
“Structural characterization of the acridine–(H2O)n (n = 1–3) clusters by fluorescence dip infrared spectroscopy”
Chemical Physics Letters317(3-5), 211–219 (2000). Link
