江波 進一(エナミ シンイチ)
- 論文
- Efficient scavenging of Criegee intermediates on water by surface-active cis-pinonic acid
Enami Shinichi; Colussi A. J.
PHYSICAL CHEMISTRY CHEMICAL PHYSICS/19(26)/pp.17044-17051, 2017-07 - 大気中の粒子成長の鍵となるプロセスを解明
江波 進一
プレスリリース (筑波研究学園都市記者会、環境省記者クラブ同時配付)https://www.nies.go.jp/whatsnew/20170407/20170407.html, 2017-04 - 新規質量分析法を用いた不均一ラジカル反応機構の研究
江波 進一
Molecular Sciences/11(1)/p.A0090, 2017 - Criegee Chemistry on Aqueous Organic Surfaces
Enami Shinichi; Colussi A. J.
JOURNAL OF PHYSICAL CHEMISTRY LETTERS/8(7)/pp.1615-1623, 2017-04 - Reactive Uptake of Gaseous Sesquiterpenes on Aqueous Surfaces
Matsuoka Kohei; Sakamoto Yosuke; Hama Tetsuya; Kajii Yos...
JOURNAL OF PHYSICAL CHEMISTRY A/121(4)/pp.810-818, 2017-02 - Carboxylate Ion Availability at the Air-Water Interface
Enami Shinichi; Fujii Tomihide; Sakamoto Yosuke; Hama Te...
JOURNAL OF PHYSICAL CHEMISTRY A/120(46)/pp.9224-9234, 2016-11 - Halogen Radical Chemistry at Aqueous Interfaces
Enami Shinichi; Hoffmann Michael R.; Colussi A. J.
JOURNAL OF PHYSICAL CHEMISTRY A/120(31)/pp.6242-6248, 2016-08 - OH-Radical Oxidation of Surface-Active cis-Pinonic Acid at the Air-Water Interface
Enami Shinichi; Sakamoto Yosuke
JOURNAL OF PHYSICAL CHEMISTRY A/120(20)/pp.3578-3587, 2016-05 - Conference Report : JSPS-DFGセミナー「大気エアロゾルの物理化学特性ならびにその大気質および健康への影響」参加報告
佐藤 圭; 江波 進一; 藤谷 雄二
エアロゾル研究/31(1)/pp.59-62, 2016 - ‘Sizing’ heterogeneous chemistry in the conversion of gaseous dimethyl sulfide to atmospheric particles
Enami Shinichi; Sakamoto Yosuke; Hara Keiichiro; Osada...
Environ. Sci. Technol./50(4)/pp.1834-1843, 2016 - 有機エアロゾルに関する不均一反応研究の現状と課題:大気化学と理論化学の連携
谷本 浩志; 金谷 有剛; 持田 陸宏; 廣川 淳; 猪俣 敏; 松本 淳; 薮下 彰啓; 江波 進一; 森田 ...
大気化学研究/34/pp.22-28, 2016 - Extensive H-atom abstraction from benzoate by OH-radicals at the air-water interface
Enami Shinichi; Hoffmann Michael R.; Colussi Agustin J.
PHYSICAL CHEMISTRY CHEMICAL PHYSICS/18(46)/pp.31505-31512, 2016 - OH-radical specific addition to glutathione S-atom at the air-water interface – Relevance to the redox balance of the lung epithelial lining fluid
Shinichi Enami; Michael R. Hoffmann; Agustin J. Colussi
J. Phys. Chem. Lett./6(19)/pp.3935-3943, 2015-10 - Stepwise Oxidation of Aqueous Dicarboxylic Acids by Gas-Phase OH Radicals
Enami Shinichi; Hoffmann Michael R.; Colussi Agustin J.
JOURNAL OF PHYSICAL CHEMISTRY LETTERS/6(3)/pp.527-534, 2015-02 - Fenton Oxidation of Gaseous Isoprene on Aqueous Surfaces
Rifkha Kameel F.; Riboni F.; Hoffmann M. R.; Enami Shini...
JOURNAL OF PHYSICAL CHEMISTRY C/118(50)/pp.29151-29158, 2014-12 - In Situ Mass Spectrometric Detection of Interfacial Intermediates in the Oxidation of RCOOH(aq) by Gas-Phase OH-Radicals
Enami Shinichi; Hoffmann Michael R.; Colussi Agustin J.
JOURNAL OF PHYSICAL CHEMISTRY A/118(23)/pp.4130-4137, 2014-06 - 京都大学白眉センターだより シリーズ白眉対談「化学」
江波 進一; タッセル セドリック; 齊藤 博英; 村上 慧
*EMPTY*, 2014 - 水界面で起こるフェントン反応のメカニズム
江波 進一
化学/69(6)/pp.44-48, 2014 - 植物アロマの大気化学~不均一反応の分子レベルでの解明~
江波 進一
Aroma Research/15(1)/pp.68-71, 2014 - Ion-Specific Long-Range Correlations on Interfacial Water Driven by Hydrogen Bond Fluctuations
Enami Shinichi; Colussi Agustin J.
JOURNAL OF PHYSICAL CHEMISTRY B/118(7)/pp.1861-1866, 2014-02 - Comment on "Surface Acidity of Water Probed by Free Energy Calculation for Trimethylamine Protonation"
Colussi Agustin J.; Enami Shinichi
JOURNAL OF PHYSICAL CHEMISTRY C/118(5)/pp.2894-2894, 2014-02 - 水の界面で起こるフェントン反応のメカニズムを解明 -Fe(IV)=O中間体の直接検出に成功-
江波 進一
プレスリリース https://news.mynavi.jp/article/20140110-a527/, 2014-01 - Fenton chemistry at aqueous interfaces
Enami Shinichi; Sakamoto Yosuke; Colussi Agustin J.
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA/111(2)/pp.623-628, 2014-01 - Long-range specific ion-ion interactions in hydrogen-bonded liquid films
Enami Shinichi; Colussi Agustín J.
Journal of Chemical Physics/138(18), 2013-05-14 - Long-Range Hofmeister Effects of Anionic and Cationic Amphiphiles
Enami Shinichi; Colussi Agustin J.
JOURNAL OF PHYSICAL CHEMISTRY B/117(20)/pp.6276-6281, 2013-05 - さらに表示...
- Efficient scavenging of Criegee intermediates on water by surface-active cis-pinonic acid