单层
聚合物
电导率
材料科学
模数
无定形固体
化学物理
电阻式触摸屏
化学
纳米技术
复合材料
结晶学
物理化学
计算机科学
计算机视觉
作者
Jinxin Wang,Hao Zhang,Shumu Li,Caijun Ding,Zhengjing Zhao,Xiuzhen Long,Wei Chang,Yanfang Wang,Yongfang Li,Lingyun Shen,Shuxun Cui,Wenjing Hong,Mao Li
标识
DOI:10.1002/anie.202216838
摘要
The synthesis of crystalline polymer with a well-defined orientated state and a two-dimensional crystalline size beyond a micrometer will be essential to achieve the highest physical feature of polymer material but remain challenging. Herein, we show the synthesis of the crystalline unipolymer monolayer with an unusual ultrahigh modulus that is higher than the ITO substrate and high conductance by simultaneous electrosynthesis and manipulation. We find that the polymer monolayer has fully extended in the vertical and unidirectional orientation, which is proposed to approach their theoretically highest density, modulus, and conductivity among all aggregation formations of the current polymer. The modulus and current density can reach 40 and 1000 times higher than their amorphous counterpart. It is also found that these monolayers exhibit the bias- and length-dependent multiple charge states and asymmetrically negative differential resistance (NDR) effect, indicating that this unique molecular tailoring and ordering design is promising for multilevel resistive memory devices. Our work demonstrates the creation of a crystalline polymer monolayer for approaching the physical limit of polymer electronic materials and also provides an opportunity to challenge the synthetically iterative limit of an isolated ultra-long polymer.
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