Lu Yang, Yu Zi-Di, Un Hio-Ieng, Yao Ze-Fan, You Hao-Yang, Jin Wenlong, Li Liang, Wang Zi-Yuan, Dong Bo-Wei, Barlow Stephen, Longhi Elena, Di Chong-An, Zhu Daoben, Wang Jie-Yu, Silva Carlos, Marder Seth R, Pei Jian
Beijing National Laboratory for Molecular Sciences (BNLMS), Key Laboratory of Polymer Chemistry and Physics of Ministry of Education, Center of Soft Matter Science and Engineering, College of Chemistry and Molecular Engineering, Peking University, Beijing, 100871, China.
School of Chemistry and Biochemistry and Center for Organic Photonics and Electronics, Georgia Institute of Technology, Atlanta, GA, 30332-400, USA.
Adv Mater. 2021 Jan;33(2):e2005946. doi: 10.1002/adma.202005946. Epub 2020 Nov 30.
Solution-processable highly conductive polymers are of great interest in emerging electronic applications. For p-doped polymers, conductivities as high a nearly 10 S cm have been reported. In the case of n-doped polymers, they often fall well short of the high values noted above, which might be achievable, if much higher charge-carrier mobilities determined could be realized in combination with high charge-carrier densities. This is in part due to inefficient doping and dopant ions disturbing the ordering of polymers, limiting efficient charge transport and ultimately the achievable conductivities. Here, n-doped polymers that achieve a high conductivity of more than 90 S cm by a simple solution-based co-deposition method are reported. Two conjugated polymers with rigid planar backbones, but with disordered crystalline structures, exhibit surprising structural tolerance to, and excellent miscibility with, commonly used n-dopants. These properties allow both high concentrations and high mobility of the charge carriers to be realized simultaneously in n-doped polymers, resulting in excellent electrical conductivity and thermoelectric performance.
可溶液加工的高导电聚合物在新兴电子应用中备受关注。对于p型掺杂聚合物,已报道的电导率高达近10 S/cm。在n型掺杂聚合物的情况下,它们往往远低于上述高值,如果能实现更高的电荷载流子迁移率并结合高电荷载流子密度,这些高值或许是可以达到的。这部分是由于掺杂效率低下以及掺杂离子扰乱聚合物的有序排列,限制了有效的电荷传输并最终限制了可实现的电导率。在此,报道了通过一种简单的基于溶液的共沉积方法实现电导率超过90 S/cm的n型掺杂聚合物。两种具有刚性平面主链但晶体结构无序的共轭聚合物,对常用的n型掺杂剂表现出惊人的结构耐受性和优异的混溶性。这些特性使得在n型掺杂聚合物中能够同时实现高浓度和高迁移率的电荷载流子,从而产生优异的导电性和热电性能。