小提琴手
共轭体系
激进的
电导率
电子转移
光化学
氧化还原
分子
材料科学
化学物理
化学
电阻率和电导率
有机化学
聚合物
物理化学
电气工程
工程类
作者
Qi Sui,He‐Chong Wang,Yanyan Zhang,Rong Sun,Xinxin Jin,Bing‐Wu Wang,Lin Wang,Song Gao
标识
DOI:10.1002/chem.202301575
摘要
Manipulating the radical concentration to modulate the properties in solid multifunctional materials is an attractive topic in various frontier fields. Viologens have the unique redox capability to generate radical states through reversible electron transfer (ET) under external stimuli. Herein, taking the viologens as the model, two kinds of crystalline compounds with different molecule-conjugated systems were designed and synthesized. By subjecting the specific model viologens to pressure, the cross-conjugated 2-X all exhibit much higher radical concentrations, along with more sensitive piezochromic behaviors, compared to the linear-conjugated 1-X. Unexpectedly, we find that the electrical resistance (R) of 1-NO3 decreased by three orders of magnitude with the increasing pressure, while that in high-radical-concentration 2-NO3 remained almost unchanged. To date, such unusual invariant conductivity has not been documented in molecular-based materials under high pressure, breaking the conventional wisdom that the generations of radicals are beneficial to improve conductivity. We highlight that adjusting the molecular conjugation modes can be used as an effective way to regulate the radical concentrations and thus modulate properties rationally.
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