Michiya Fujiki
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Explore the profile of Michiya Fujiki including associated specialties, affiliations and a list of published articles.
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75
Citations
247
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Recent Articles
1.
Kan K, Fujiki M, Akashi M, Ajiro H
ACS Macro Lett
. 2022 May;
5(9):1014-1018.
PMID: 35614637
Herein, we present the first induced chirality of vanillin and its phenolic analogs attached to the chain ends of poly(l,l-lactide) and poly(d,d-lactide). Vanillin analogs were used as chromophoric and luminophoric,...
2.
Chen H, Yin L, Liu M, Wang L, Fujiki M, Zhang W, et al.
RSC Adv
. 2022 May;
9(9):4849-4856.
PMID: 35514644
The left and right helicities of azobenzene (Azo)-containing main-chain polymer (PF8Azo) were successfully controlled with an enantiomeric pair of rigid rod-like helical polysilanes carrying ()- and ()-2-methylbutyl groups (PSi- and...
3.
Toda H, Hara N, Fujiki M, Imai Y
RSC Adv
. 2022 Apr;
11(3):1581-1585.
PMID: 35424128
Although 12 diamagnetic fused aromatics with or without substituents exhibit mirror-symmetric magnetic circularly polarised luminescence (MCPL) through N-up and S-up Faraday geometries under a magnetic field intensity of 1.6 T,...
4.
Toda H, Otake S, Ito A, Miyasaka M, Fujiki M, Imai Y
Chemphyschem
. 2021 Jul;
22(20):2058-2062.
PMID: 34251736
This paper reports the first magnetic circularly polarized luminescence (MCPL) characteristics of racemic helicenes, including four unsubstituted [n]helicenes (n=3,4,5,7) and two [4]helicene derivatives bearing methoxy substituents, in tetrahydrofuran (THF) and...
5.
Mishima K, Kaji D, Fujiki M, Imai Y
Chemphyschem
. 2021 Jul;
22(17):1728-1737.
PMID: 34223689
Herein, magnetic circularly polarized luminescence (CPL) (MCPL) spectroscopy was conducted to analyze an Eu (hfa) complex with three chiral P -ligands. Resultantly, (R)-chirality luminophores with S-up orientation and (S)-chirality luminophores...
6.
Kano H, Hayashi H, Matsuo K, Fujiki M, Yamada H, Aratani N
Sci Rep
. 2021 Jun;
11(1):12072.
PMID: 34103595
Optically active fullerenes, including C and C derivatives carrying organic substituents, are used in a range of applications because of their unique spectroscopic, catalytic, and chiral recognition properties. However, their...
7.
Hara N, Kitahara M, Sugimura T, Toda H, Shizuma M, Ito A, et al.
Phys Chem Chem Phys
. 2021 Mar;
23(14):8236-8240.
PMID: 33710208
Diamagnetic achiral pyrene and phenanthrene derivatives substituted with electron-donating hydroxyl/methoxy groups and electron-withdrawing carboxylic acid groups exhibited clear magnetic circularly polarised luminescence (MCPL) spectra at 360-460 nm in dilute solvents...
8.
Matsudaira K, Mimura Y, Hotei J, Yagi S, Yamashita K, Fujiki M, et al.
Chem Asian J
. 2021 Mar;
16(8):926-930.
PMID: 33687793
The magnetic circularly polarized luminescence (MCPL) and photoluminescence (PL) spectra of achiral (2,3,7,8,12,13,17,18-octaethylporphyrinato)platinum(II), PtOEP, and [2-(4',6'-difluorophenyl)pyridinato-N,C ]platinum(II) acetylacetonate-O,O, F -ppyPt(acac), in toluene and dichloromethane solutions were recorded under an external...
9.
Matsudaira K, Izumoto A, Mimura Y, Kondo Y, Suzuki S, Yagi S, et al.
Phys Chem Chem Phys
. 2021 Feb;
23(9):5074-5078.
PMID: 33616128
Optically inactive, paramagnetic Ir(iii)(ppy) and Ir(iii)(ppy)(acac) (ppy: 2-phenylpyridinate and acac: acetylacetonate) showed nearly mirror-symmetric magnetic circularly polarised luminescence (MCPL) spectra in dilute dichloromethane and dimethyl sulfoxide under N-up and S-up...
10.
Hu X, Yin Z, Guo J, Adamson J, Fujiki M, Borovkov V
J Org Chem
. 2020 Dec;
86(1):379-387.
PMID: 33263402
Stereospecific synthesis of several cyclic sulfite esters containing three stereogenic centers from enantiopure 1,1,4,4-tetraarylbutanetetraols was achieved. Chiral sulfur centers were constructed stereospecifically via a diastereoselective reaction with the assistance of...