TY - JOUR
T1 - Aggregation-induced chirality amplification of optically active fluorescent polyurethane and a cyclic dimer in the ground and excited states
AU - Song, Zhiyi
AU - Sato, Hiroyasu
AU - Pietropaolo, Adriana
AU - Wang, Qingyu
AU - Shimoda, Shuhei
AU - Dai, Heshuang
AU - Imai, Yoshitane
AU - Toda, Hayato
AU - Harada, Takunori
AU - Shichibu, Yukatsu
AU - Konishi, Katsuaki
AU - Bando, Masayoshi
AU - Naga, Naofumi
AU - Nakano, Tamaki
N1 - Funding Information:
This work was supported in part by the MEXT/ JSPS KAKENHI Grant Number JP 19H02759, in part by the JST grant No. JPMJTMl9E4 and in part by the MEXT program of the Integrated Research Consortium on Chemical Sciences (IRCCS). PRIN2017 2017WBZFHL_003 (AP) is acknowledged for financial resources. Prof. Taro Tsubomura (Seikei University) is acknowledged for valuable comments on CPL measurements. Technical Division of Institute for Catalysis, Hokkaido University is acknowledged for technical support for experiments.
Publisher Copyright:
This journal is © The Royal Society of Chemistry
PY - 2022/1/21
Y1 - 2022/1/21
N2 - Optically active linear polyurethane and a cyclic dimer were synthesized from 2,7-diisocyanatofluorene and 2,2′-dihydroxy-1,1′-binaphthyl. The circular dichroism (CD) spectral intensity of the polymer was amplified at a higher concentration through aggregate formation, while circularly polarized light (CPL) emission was not enhanced. The cyclic dimer's CPL emission was largely amplified (glum 1.1 × 10−2) due to intermolecular excimer formation through aggregation, while the CD intensity was not affected.
AB - Optically active linear polyurethane and a cyclic dimer were synthesized from 2,7-diisocyanatofluorene and 2,2′-dihydroxy-1,1′-binaphthyl. The circular dichroism (CD) spectral intensity of the polymer was amplified at a higher concentration through aggregate formation, while circularly polarized light (CPL) emission was not enhanced. The cyclic dimer's CPL emission was largely amplified (glum 1.1 × 10−2) due to intermolecular excimer formation through aggregation, while the CD intensity was not affected.
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U2 - 10.1039/d1cc05633f
DO - 10.1039/d1cc05633f
M3 - Article
C2 - 34951413
AN - SCOPUS:85123584796
SN - 1359-7345
VL - 58
SP - 1029
EP - 1032
JO - Chemical Communications
JF - Chemical Communications
IS - 7
ER -