Naoya Kurahashi
Kyoto University
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Featured researches published by Naoya Kurahashi.
Physical Chemistry Chemical Physics | 2010
Ying Tang; Huan Shen; Kentaro Sekiguchi; Naoya Kurahashi; Tomoya Mizuno; Yoshiichi Suzuki; Toshinori Suzuki
We present the first measurement of the vertical binding energy (VBE) of a hydrated electron in bulk water by the time-resolved photoelectron spectroscopy (TRPES) of the charge-transfer-to-solvent (CTTS) reaction in aqueous NaI solution. Our best estimate of VBE is 3.27 +/- 0.10 eV for H(2)O and 3.20 +/- 0.10 eV for D(2)O.
Applied Physics Letters | 2013
Tetsuo Katayama; Yuichi Inubushi; Yuki Obara; Takahiro Sato; Tadashi Togashi; Kensuke Tono; Takaki Hatsui; Takashi Kameshima; Atanu Bhattacharya; Yoshihiro Ogi; Naoya Kurahashi; Kazuhiko Misawa; Toshinori Suzuki; Makina Yabashi
We have developed a method of dispersive x-ray absorption spectroscopy with a hard x-ray free electron laser (XFEL), generated by a self-amplified spontaneous emission (SASE) mechanism. A transmission grating was utilized for splitting SASE-XFEL light, which has a relatively large bandwidth (ΔE/E ∼ 5 × 10−3), into several branches. Two primary split beams were introduced into a dispersive spectrometer for measuring signal and reference spectra simultaneously. After normalization, we obtained a Zn K-edge absorption spectrum with a photon-energy range of 210 eV, which is in excellent agreement with that measured by a conventional wavelength-scanning method. From the analysis of the difference spectra, the noise ratio was evaluated to be ∼3 × 10−3, which is sufficiently small to trace minute changes in transient spectra induced by an ultrafast optical laser. This scheme enables us to perform single-shot, high-accuracy x-ray absorption spectroscopy with femtosecond time resolution.
Optics Express | 2014
Yuki Obara; Tetsuo Katayama; Yoshihiro Ogi; Takayuki Suzuki; Naoya Kurahashi; Shutaro Karashima; Yuhei Chiba; Yusuke Isokawa; Tadashi Togashi; Yuichi Inubushi; Makina Yabashi; Toshinori Suzuki; Kazuhiko Misawa
We present femtosecond time-resolved X-ray absorption spectroscopy of aqueous solution using a hard x-ray free electron laser (SACLA) and a synchronized Ti:sapphire laser. The instrumental response time is 200 fs, and the repetition rate of measurement is 10 Hz. A cylindrical liquid beam 100 μm in diameter of aqueous ammonium iron(III) oxalate solution is photoexcited at 400 nm, and the transient X-ray absorption spectra are measured in the K-edge region of iron, 7.10 - 7.26 keV, using a dual X-ray beam dispersive detection method. Each of the dual beams has the pulse energy of 1.4 μJ, and pump-induced absorbance change on the order of 10(-3) is successfully detected. The photoexcited iron complex exhibits a red shifted iron K-edge with the appearance time constant of 260 fs. The X-ray absorption difference spectra, with and without the pump pulses, are independent of time delay after 1.5 ps up to 100 ps, indicating that the photoexcited species is long-lived.
Journal of Chemical Physics | 2014
Naoya Kurahashi; Shutaro Karashima; Ying Tang; Takuya Horio; Bumaliya Abulimiti; Yoshiichi Suzuki; Yoshihiro Ogi; Masaki Oura; Toshinori Suzuki
The streaming potentials of liquid beams of aqueous NaCl, NaBr, and NaI solutions are measured using soft X-ray, He(I), and laser multiphoton ionization photoelectron spectroscopy. Gaseous molecules are ionized in the vicinity of liquid beams and the photoelectron energy shifts are measured as a function of the distance between the ionization point and the liquid beam. The streaming potentials change their polarity with concentration of electrolytes, from which the singular points of concentration eliminating the streaming potentials are determined. The streaming currents measured in air also vanish at these concentrations. The electron binding energies of liquid water and I(-), Br(-), and Cl(-) anions are revisited and determined more accurately than in previous studies.
Structural Dynamics | 2015
Yoshihiro Ogi; Yuki Obara; Tetsuo Katayama; Y.-I. Suzuki; S. Y. Liu; N. C.-M. Bartlett; Naoya Kurahashi; Shutaro Karashima; Tadashi Togashi; Yuichi Inubushi; K. Ogawa; Shigeki Owada; Martina Rubešová; Makina Yabashi; Kazuhiko Misawa; Petr Slavíček; Toshinori Suzuki
Time-resolved X-ray absorption spectroscopy was performed for aqueous ammonium iron(III) oxalate trihydrate solutions using an X-ray free electron laser and a synchronized ultraviolet laser. The spectral and time resolutions of the experiment were 1.3 eV and 200 fs, respectively. A femtosecond 268 nm pulse was employed to excite [Fe(III)(C2O4)3]3− in solution from the high-spin ground electronic state to ligand-to-metal charge transfer state(s), and the subsequent dynamics were studied by observing the time-evolution of the X-ray absorption spectrum near the Fe K-edge. Upon 268 nm photoexcitation, the Fe K-edge underwent a red-shift by more than 4 eV within 140 fs; however, the magnitude of the redshift subsequently diminished within 3 ps. The Fe K-edge of the photoproduct remained lower in energy than that of [Fe(III)(C2O4)3]3−. The observed red-shift of the Fe K-edge and the spectral feature of the product indicate that Fe(III) is upon excitation immediately photoreduced to Fe(II), followed by ligand dissociation from Fe(II). Based on a comparison of the X-ray absorption spectra with density functional theory calculations, we propose that the dissociation proceeds in two steps, forming first [(CO2•)Fe(II)(C2O4)2]3− and subsequently [Fe(II)(C2O4)2]2−.
Structural Dynamics | 2017
Yuki Obara; Hironori Ito; Terumasa Ito; Naoya Kurahashi; Stephan Thürmer; Hiroki Tanaka; Tetsuo Katayama; Tadashi Togashi; Shigeki Owada; Yo-ichi Yamamoto; Shutaro Karashima; Junichi Nishitani; Makina Yabashi; Toshinori Suzuki; Kazuhiko Misawa
The charge-carrier dynamics of anatase TiO2 nanoparticles in an aqueous solution were studied by femtosecond time-resolved X-ray absorption spectroscopy using an X-ray free electron laser in combination with a synchronized ultraviolet femtosecond laser (268 nm). Using an arrival time monitor for the X-ray pulses, we obtained a temporal resolution of 170 fs. The transient X-ray absorption spectra revealed an ultrafast Ti K-edge shift and a subsequent growth of a pre-edge structure. The edge shift occurred in ca. 100 fs and is ascribed to reduction of Ti by localization of generated conduction band electrons into shallow traps of self-trapped polarons or deep traps at penta-coordinate Ti sites. Growth of the pre-edge feature and reduction of the above-edge peak intensity occur with similar time constants of 300–400 fs, which we assign to the structural distortion dynamics near the surface.
Physical Chemistry Chemical Physics | 2011
Kiyoshi Nishizawa; Naoya Kurahashi; Kentarou Sekiguchi; Tomoya Mizuno; Yoshihiro Ogi; Takuya Horio; Masaki Oura; Nobuhiro Kosugi; Toshinori Suzuki
Chemical Physics Letters | 2010
Ying Tang; Yoshiichi Suzuki; Huan Shen; Kentaro Sekiguchi; Naoya Kurahashi; Kiyoshi Nishizawa; Peng Zuo; Toshinori Suzuki
Physical Review E | 2014
Yoshiichi Suzuki; Kiyoshi Nishizawa; Naoya Kurahashi; Toshinori Suzuki
Chemistry Letters | 2010
Huan Shen; Naoya Kurahashi; Takuya Horio; Kentaro Sekiguchi; Toshinori Suzuki