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基于芴醇基傅克反应制备复杂二芳基芴类半导体
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作者 常永正 曹洪涛 +6 位作者 冯全友 魏颖 卞临沂 凌海峰 林冬青 解令海 黄维 《科学通报》 EI CAS CSCD 北大核心 2021年第33期4268-4283,共16页
芴醇的傅克反应制备不同结构的复杂二芳基芴(complex diarylfluorenes,CDAFs)赋予空间位阻功能化半导体新的机遇.本文从芴醇基傅克反应的特征、CDAFs结构及其在有机塑料电子领域的应用3个层面进行了综述.首先,概述了位阻型半导体在有机... 芴醇的傅克反应制备不同结构的复杂二芳基芴(complex diarylfluorenes,CDAFs)赋予空间位阻功能化半导体新的机遇.本文从芴醇基傅克反应的特征、CDAFs结构及其在有机塑料电子领域的应用3个层面进行了综述.首先,概述了位阻型半导体在有机塑料电子的重要地位,追溯傅克反应历史,梳理芴醇基傅克反应特征与优势及其反应规律.然后,介绍了纳米位阻、多位阻、聚合物位阻以及封端型半导体等各类CDAFs结构.最后,总结了CDAFs在有机发光二极管、有机激光、有机太阳能电池、有机光电存储和有机分子与纳米器件中的应用,并展望了未来的"格芴智能"发展方向. 展开更多
关键词 二芳基芴 傅克反应 空间设计 有机半导体 光电器件
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Novel Porphyrin-Containing Polymer Based Memristor for Synaptic Plasticity Simulation
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作者 linyi bian Meng Xie +8 位作者 Hao Chong Zhewei Zhang Guangyi Liu Qiushuo Han Jiaoyang Ge Zheng Liu Yang Lei Guangwei Zhang Linghai Xie 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2022年第20期2451-2456,共6页
The porphyrin-based copolymer PZnTPP-SFX is designed and synthesized by alternating porphyrin and spiro[fluorene-9,9'-xanthene]via Suzuki copolymerization.A simple memristor structure of ITO/ZnTPP-SFX/AlOx/Al was ... The porphyrin-based copolymer PZnTPP-SFX is designed and synthesized by alternating porphyrin and spiro[fluorene-9,9'-xanthene]via Suzuki copolymerization.A simple memristor structure of ITO/ZnTPP-SFX/AlOx/Al was fabricated by spin-coating process.The conventional synaptic plasticity is emulated using the single memristor including nonlinear transmission characteristics,spike-timing dependent plasticity and spike-rate dependent plasticity.New spike-voltage dependent plasticity is also found in the memristor which can selectively perform potentiation and depression behaviors at a unipolar voltage.Compared with the device performance of uncoordinated metalloporphyrin polymer,it was found that oxygen vacancies diffuse and migrate into PZnTPP-SFX layer with the assist of coordination metal.This study suggests that porphyrin-based polymers have great promise for synaptic simulation of artificial neural network. 展开更多
关键词 COPOLYMERIZATION Spiro compounds MEMRISTOR Cooperative effects Synaptic plasticity
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