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酯化反应法制备两亲性接枝共聚物PE-g-PEO 被引量:4
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作者 吕英莹 马志 +2 位作者 胡友良 许光学 庄志强 《科学通报》 EI CAS CSCD 北大核心 2002年第17期1309-1312,共4页
通过含马来酸酐的聚(乙烯-对甲基苯乙烯)(PE-pMS)共聚物和含羟基末端基团的聚氧化乙烯(PEO)之间的酯化反应,制备了系列高分子量的两亲性接枝共聚物-聚乙烯接枝聚氧化乙烯(PE-g-PEO).改变实验条件可以控制PE-g-PEO接枝共聚物的... 通过含马来酸酐的聚(乙烯-对甲基苯乙烯)(PE-pMS)共聚物和含羟基末端基团的聚氧化乙烯(PEO)之间的酯化反应,制备了系列高分子量的两亲性接枝共聚物-聚乙烯接枝聚氧化乙烯(PE-g-PEO).改变实验条件可以控制PE-g-PEO接枝共聚物的结构组成与分子量等。利用核磁共振氢谱(1H NMR)和Fourier变换红外光谱(FTIR)对所得两亲性接枝共聚物的结构组成进行了分析。 展开更多
关键词 酯化反应法 制备 两亲性接枝共 PE-g-PEO 乙烯 聚氮化乙烯 结构组成 分子量
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Chemical adsorption on 2D dielectric nanosheets for matrix free nanocomposites with ultrahigh electrical energy storage 被引量:3
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作者 Jie Chen Zhonghui Shen +4 位作者 Qi Kang Xiaoshi Qian Shengtao Li Pingkai Jiang Xingyi Huang 《Science Bulletin》 SCIE EI CSCD 2022年第6期609-618,M0004,共11页
Relaxor ferroelectric polymers display great potential in capacitor dielectric applications because of their excellent flexibility,light weight,and high dielectric constant.However,their electrical energy storage capa... Relaxor ferroelectric polymers display great potential in capacitor dielectric applications because of their excellent flexibility,light weight,and high dielectric constant.However,their electrical energy storage capacity is limited by their high conduction losses and low dielectric strength,which primarily originates from the impact-ionization-induced electron multiplication,low mechanical modulus,and low thermal conductivity of the dielectric polymers.Here a matrix free strategy is developed to effectively suppress electron multiplication effects and to enhance mechanical modulus and thermal conductivity of a dielectric polymer,which involves the chemical adsorption of an electron barrier layer on boron nitride nanosheet surfaces by chemically adsorbing an amino-containing polymer.A dramatic decrease of leakage current(from 2.4×10^(-6)to 1.1×10^(-7)A cm^(-2)at 100 MV m^(-1))and a substantial increase of breakdown strength(from 340 to 742 MV m^(-1))were achieved in the nanocompostes,which result in a remarkable increase of discharge energy density(from 5.2 to 31.8 J cm^(-3)).Moreover,the dielectric strength of the nanocomposites suffering an electrical breakdown could be restored to 88%of the original value.This study demonstrates a rational design for fabricating dielectric polymer nanocomposites with greatly enhanced electric energy storage capacity. 展开更多
关键词 Boron nitride nanosheets Electron barrier layer Relaxor ferroelectric polymers NANOCOMPOSITES Electrical energy storage
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