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Physical Chemistry Chemical Physics : PCCP|January 17, 2020
In situ observation of the potential-dependent structure of an electrolyte/electrode interface by heterodyne-detected vibrational sum frequency generationAtsushi Sayama, Satoshi Nihonyanagi, Yasuhiro Ohshima, et al.
The Journal of Chemical Physics|November 4, 2024
Time-resolved heterodyne-detected electronic sum frequency generation (TR-HD-ESFG) spectroscopy: A new approach to explore interfacial dynamicsSubhadip Roy, Mohammed Ahmed, Satoshi Nihonyanagi, et al.
Journal of the American Chemical Society|June 4, 2004
Evidence for epitaxial arrangement and high conformational order of an organic monolayer on Si(111) by sum frequency generation spectroscopySatoshi Nihonyanagi, Dai Miyamoto, Satoru Idojiri, et al.
Nature Communications|October 23, 2020
Reorientation-induced relaxation of free OH at the air/water interface revealed by ultrafast heterodyne-detected nonlinear spectroscopyKen-Ichi Inoue, Mohammed Ahmed, Satoshi Nihonyanagi, et al.
The Journal of Chemical Physics|November 17, 2014
Interfacial water in the vicinity of a positively charged interface studied by steady-state and time-resolved heterodyne-detected vibrational sum frequency generationPrashant Chandra Singh, Satoshi Nihonyanagi, Shoichi Yamaguchi, et al.
The Journal of Chemical Physics|February 10, 2019
Effect of hydrogen-bond on ultrafast spectral diffusion dynamics of water at charged monolayer interfacesKen-Ichi Inoue, Mohammed Ahmed, Satoshi Nihonyanagi, et al.
Langmuir : the ACS Journal of Surfaces and Colloids|March 21, 2008
Self-assembled monolayer compatible with metal surface acoustic wave devices on lithium niobateSatoshi Nihonyanagi, Ali Eftekhari-Bafrooei, Jacqueline Hines, et al.
Journal of the American Chemical Society|April 27, 2012
Three distinct water structures at a zwitterionic lipid/water interface revealed by heterodyne-detected vibrational sum frequency generationJahur A Mondal, Satoshi Nihonyanagi, Shoichi Yamaguchi, et al.
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