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Dive into the research topics where Tomohisa Takaya is active.

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Featured researches published by Tomohisa Takaya.


Journal of Physical Chemistry A | 2014

Relaxation mechanism of β-carotene from S2 (1Bu(+)) state to S1 (2Ag(-)) state: femtosecond time-resolved near-IR absorption and stimulated resonance Raman studies in 900-1550 nm region.

Tomohisa Takaya; Koichi Iwata

Carotenoids have two major low-lying excited states, the second lowest (S2 (1Bu(+))) and the lowest (S1 (2Ag(-))) excited singlet states, both of which are suggested to be involved in the energy transfer processes in light-harvesting complexes. Studying vibrational dynamics of S2 carotenoids requires ultrafast time-resolved near-IR Raman spectroscopy, although it has much less sensitivity than visible Raman spectroscopy. In this study, the relaxation mechanism of β-carotene from the S2 state to the S1 state is investigated by femtosecond time-resolved multiplex near-IR absorption and stimulated Raman spectroscopy. The energy gap between the S2 and S1 states is estimated to be 6780 cm(-1) from near-IR transient absorption spectra. The near-IR stimulated Raman spectrum of S2 β-carotene show three bands at 1580, 1240, and 1050 cm(-1). When excess energy of 4000 cm(-1) is added, the S1 C═C stretch band shows a large upshift with a time constant of 0.2 ps. The fast upshift is explained by a model that excess energy generated by internal conversion from the S2 state to the S1 state is selectively accepted by one of the vibronic levels of the S1 state and is redistributed among all the vibrational modes.


Scientific Reports | 2017

A Guide to Design Functional Molecular Liquids with Tailorable Properties using Pyrene-Fluorescence as a Probe

Fengniu Lu; Tomohisa Takaya; Koichi Iwata; Izuru Kawamura; Akinori Saeki; Masashi Ishii; Kazuhiko Nagura; Takashi Nakanishi

Solvent-free, nonvolatile, room-temperature alkylated-π functional molecular liquids (FMLs) are rapidly emerging as a new generation of fluid matter. However, precision design to tune their physicochemical properties remains a serious challenge because the properties are governed by subtle π-π interactions among functional π-units, which are very hard to control and characterize. Herein, we address the issue by probing π-π interactions with highly sensitive pyrene-fluorescence. A series of alkylated pyrene FMLs were synthesized. The photophysical properties were artfully engineered with rational modulation of the number, length, and substituent motif of alkyl chains attached to the pyrene unit. The different emission from the excimer to uncommon intermediate to the monomer scaled the pyrene-pyrene interactions in a clear trend, from stronger to weaker to negligible. Synchronously, the physical nature of these FMLs was regulated from inhomogeneous to isotropic. The inhomogeneity, unexplored before, was thoroughly investigated by ultrafast time-resolved spectroscopy techniques. The result provides a clearer image of liquid matter. Our methodology demonstrates a potential to unambiguously determine local molecular organizations of amorphous materials, which cannot be achieved by conventional structural analysis. Therefore this study provides a guide to design alkylated-π FMLs with tailorable physicochemical properties.


Journal of Physical Chemistry Letters | 2018

Control of Electron Flow Direction in Photoexcited Cycloplatinated Complex Containing Conjugated Polymer–Single-Walled Carbon Nanotube Hybrids

Wenjuan Xiong; Lili Du; Kin Cheung Lo; Haiting Shi; Tomohisa Takaya; Koichi Iwata; Wai Kin Chan; David Lee Phillips

Conjugated polymers incorporated with cycloplatinated complexes (P1-Pt and P2-Pt) were used as dispersants for single-walled carbon nanotubes (SWCNTs). Significant changes in the UV-vis absorption spectra were observed after the formation of the polymer/SWCNT hybrids. Molecular dynamics (MD) simulations revealed the presence of a strong interaction between the cycloplatinated complex moieties and the SWCNT surface. The photoinduced electron transfer processes in these hybrids were strongly dependent on the type of the comonomer unit. Upon photoexcitation, the excited P1-Pt donates electrons to the SWCNT, while P2-Pt accepts electrons from the photoexcited SWCNT. These observations were supported by results from Raman and femtosecond time-resolved transient absorption spectroscopy experiments. The strong electronic interaction between the Pt complexes and the SWCNT gives rise to a new hybrid system that has a controllable photoinduced electron transfer flow, which are important in regulating the charge transport processes in SWCNT-based optoelectronic devices.


Springer series in chemical physics | 2004

Ultrafast intramolecular electron transfer of 9,9'-bianthryl as studied by femtosecond time-resolved near-infrared absorption and anisotropy in the 950-1500 nm region

Tomohisa Takaya; Koichi Iwata; Hiro-o Hamaguchi; Haruo Kuroda

Femtosecond near-infrared absorption and its anisotropy of 9,9′-bianthryl in the 950–1500 nm region reveal that the locally-excited (LE) state is directly converted to the charge-transfer (CT) state in 0.3 ps.


Journal of Physical Chemistry B | 2004

Carrier Dynamics in TiO2 and Pt/TiO2 Powders Observed by Femtosecond Time-Resolved Near-Infrared Spectroscopy at a Spectral Region of 0.9−1.5 μm with the Direct Absorption Method

Koichi Iwata; Tomohisa Takaya; Hiro-o Hamaguchi; Taka-aki Ishibashi; Hiroshi Onishi,§,; and; Haruo Kuroda


Journal of Physical Chemistry A | 2010

Two different charge transfer states of photoexcited 9,9'-bianthryl in polar and nonpolar solvents characterized by nanosecond time-resolved near-IR spectroscopy in the 4500-10,500 cm(-1) region.

Nobuyuki Asami; Tomohisa Takaya; Soshi Yabumoto; Shinsuke Shigeto; Hiro-o Hamaguchi; Koichi Iwata


Journal of Physical Chemistry A | 2006

Charge Resonance Character in the Charge Transfer State of Bianthryls: Effect of Symmetry Breaking on Time-Resolved Near-IR Absorption Spectra

Tomohisa Takaya; Satyen Saha; Hiro-o Hamaguchi; Moloy Sarkar; and Anunay Samanta; Koichi Iwata


Chemical Physics Letters | 2004

Femtosecond electron transfer dynamics of 9,9′-bianthryl in acetonitrile as studied by time-resolved near-infrared absorption spectroscopy

Tomohisa Takaya; Hiro-o Hamaguchi; Haruo Kuroda; Koichi Iwata


Chemistry Letters | 2015

Femtosecond time-resolved near-infrared spectroscopy of oligothiophenes and polythiophene: Energy location and effective conjugation length of their low-lying excited states

Shunnosuke Okino; Tomohisa Takaya; Koichi Iwata


Journal of Chemical Physics | 2009

Femtosecond time-resolved absorption anisotropy spectroscopy on 9,9′-bianthryl: Detection of partial intramolecular charge transfer in polar and nonpolar solvents

Tomohisa Takaya; Hiro-o Hamaguchi; Koichi Iwata

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Koichi Iwata

National Chiao Tung University

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Hiro-o Hamaguchi

Tokyo University of Science

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Takashi Nakanishi

Graduate University for Advanced Studies

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Haruo Kuroda

National Institute for Materials Science

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Nobuyuki Asami

National Chiao Tung University

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Satyen Saha

Banaras Hindu University

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Tokyo University of Science

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A. Shinohara

University of Yamanashi

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