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Aggregation-induced chiroptical generation and photoinduced switching of achiral azobenzene-alt-fluorene copolymer endowed with left- and right-handed helical polysilanes.


ABSTRACT: 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 (S)- and (R)-2-methylbutyl groups (PSi-S and PSi-R, respectively) as their hetero-aggregates in a mixture of chloroform and methanol solvents and in the solid state. Optimizing the good and poor cosolvents and their volume fractions showed that the molar ratio of PF8Azo to PSi-S/-R and the molecular weight of PF8Azo were crucial to boost the CD amplitudes of PF8Azo/PSi-S and PF8Azo/PSi-R hetero-aggregates. The photoresponsive trans-cis transformation caused noticeable changes in the sign and magnitude of the chiroptical behavior due to the hetero-aggregates. Moreover, the optically active PF8Azo homo-aggregates were produced by complete photoscissoring reactions at 313 nm, which could be assigned to the Siσ-Siσ* transitions of PSi-S and PSi-R.

SUBMITTER: Chen H 

PROVIDER: S-EPMC9060682 | biostudies-literature | 2019 Feb

REPOSITORIES: biostudies-literature

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Aggregation-induced chiroptical generation and photoinduced switching of achiral azobenzene-<i>alt</i>-fluorene copolymer endowed with left- and right-handed helical polysilanes.

Chen Hailing H   Yin Lu L   Liu Meng M   Wang Laibing L   Fujiki Michiya M   Zhang Wei W   Zhu Xiulin X  

RSC advances 20190208 9


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 (<i>S</i>)- and (<i>R</i>)-2-methylbutyl groups (PSi-<i>S</i> and PSi-<i>R</i>, respectively) as their hetero-aggregates in a mixture of chloroform and methanol solvents and in the solid state. Optimizing the good and poor cosolvents and their volume fractions showed that the molar ratio of PF8Azo to PSi-<i>  ...[more]

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