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Precise Supramolecular Polymerization of Liquid Crystalline Block Copolymer Initiated by Heavy Metallic Salts
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作者 Yi-Qi Chen bi-xin jin +3 位作者 Qin Li Yun-Jun Luo Shu-Meng Chi Xiao-Yu Li 《Chinese Journal of Polymer Science》 SCIE EI CAS CSCD 2022年第6期624-630,共7页
Heavy metallic salts are capable to bind with proteins and cause detrimental fibrilization in living cells.Herein,we report a similar case of supramolecular polymerization and thus fibrilization from a liquid crystall... Heavy metallic salts are capable to bind with proteins and cause detrimental fibrilization in living cells.Herein,we report a similar case of supramolecular polymerization and thus fibrilization from a liquid crystalline(LC)block copolymer(BCP)initiated by heavy metallic salts.Analogous to the naturally-occurring process,LC BCP“monomers”could bind with metallic salts to form small aggregates,which functioned as seeds to trigger the subsequent supramolecular polymerization of the rest BCP monomers,to produce highly uniform supramolecular polymers.The lengths of the resultant supramolecular polymer fibrils were linearly proportional to the ratios between the BCP and the metallic salts,and largely influenced by the choice of metallic cations,as well as the counterions.Lastly,this method was used to polymerize two different diblock copolymer“monomers”to produce pentablock supramolecular polymers in a one-pot manner. 展开更多
关键词 Liquid crystalline block copolymer Supramolecular polymerization Self assembly CONTROLLABILITY
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