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Jiro Abe

Researcher at Waseda University

Publications -  5
Citations -  74

Jiro Abe is an academic researcher from Waseda University. The author has contributed to research in topics: Raman spectroscopy & Resonance (chemistry). The author has an hindex of 4, co-authored 5 publications receiving 73 citations.

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Time-resolved resonance raman studies of the photochromic reaction of 6-nitro-1′,3′,3′-trimethylspiro[2H-1-benzopyran-2,2′-indoline]

TL;DR: The transient resonance Raman spectra of 6-nitro-1′,3′, 3′-3′-trimethylspiro[2 H -1-benzopyran-2,2′-indoline] reveal that at least five transient species are involved in the photochromic reaction of this compound.
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Time-resolved resonance Raman and molecular orbital studies of the structures of the transient species involved in the photochromic reaction of 2,2′-spirobi[2H-1-benzopyran]

TL;DR: In this paper, the resonance Raman spectra of 2,2′-spirobi[2H-1-benzopyran] in various solvents reveal that at least two isomers exist in solution, the relative abundance of which depends on polarity and hydrogen-bond donor ability of the solvent.
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Resonance CARS and molecular orbital studies of the binding of bilirubin to human serum albumin

TL;DR: In this paper, a mechanism was proposed in which the electrostatic attraction between the positively charged amino acid residues in HSA, most probably the protonated amino groups in the side chains of lysine or arginine residues, and the negative charges induced on the lactam oxygen atoms of bilirubin by the positive charges on the amino groups, makes an important contribution to the binding of bilibrubin to HSA.
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Resonance raman studies of the structures and vibrational assignments of the ground state, the triplet state and the radical cation of N,N,N′,N′-tetramethyl-p-phenylenediamine

TL;DR: In this article, the frequency shifts by isotopic substitutions of the ground state, triplet state and the radical cation of N, N,N,N,N′, N′,N′-tetramethyl-p-phenylenediamine have been investigated.
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Time-resolved resonance Raman spectra of the triplet state and the radical cation of 5-dibenzosuberenol and its photoionization mechanism

TL;DR: In this article, the authors obtained time-resolved resonance Raman spectra for the lowest excited triplet state T 1 and the radical cation of 5-dibenzosuberenol (DBCH-5-ol).