化学
堆积
共价键
光电导性
四方晶系
冷凝
结晶学
光电子学
晶体结构
有机化学
物理
热力学
作者
Xuesong Ding,Long Chen,Yoshihito Honsho,Xiao Feng,Oraphan Saengsawang,Jing‐Dong Guo,Akinori Saeki,Shu Seki,Stephan Irle,Shigeru Nagase,Vudhichai Parasuk,Donglin Jiang
摘要
Co-condensation of metallophthalocyanine with an electron-deficient benzothiadiazole (BTDA) block leads to the formation of a two-dimensional covalent organic framework (2D-NiPc-BTDA COF) that assumes a belt shape and consists of AA stacking of 2D polymer sheets. Integration of BTDA blocks at the edges of a tetragonal metallophthalocyanine COF causes drastic changes in the carrier-transport mode and a switch from a hole-transporting skeleton to an electron-transporting framework. 2D-NiPc-BTDA COF exhibits broad and enhanced absorbance up to 1000 nm, shows panchromatic photoconductivity, is highly sensitive to near-infrared photons, and has excellent electron mobility as high as 0.6 cm(2) V(-1) s(-1).
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