Kim Young-Gi, Nguyen Hai-Long, Kinlen Patrick
Department of Chemistry, Delaware State University, Dover, DE 19901, USA.
US Army Future Command, Picatinny Arsenal, Wharton, NJ 07806, USA.
Polymers (Basel). 2021 Aug 28;13(17):2904. doi: 10.3390/polym13172904.
Secondary dopants and the doping methods were identified for increasing the electrical conductivity of a highly processable and a primarily doped polyaniline dinonylnaphthalene sulfonic acid (PANI-DNNSA). The secondary doping was carried out using film, solution, and vapor doping methods. The doping methods and functional groups of secondary dopants were observed to play a critical role for inducing electrical characteristics of polyaniline. When secondary film doping method and -toluenesulfonic acid were used, the electrical conductivity of the secondary doped polyaniline was measured to be increased from 0.16 to 334 S/cm. A novel vapor annealing doping method was developed to incorporate secondary dopants into solution cast polyaniline films.
为提高一种易于加工且主要经过掺杂的聚苯胺二壬基萘磺酸(PANI-DNNSA)的导电性,确定了二次掺杂剂和掺杂方法。二次掺杂采用薄膜、溶液和气相掺杂方法进行。观察到二次掺杂剂的掺杂方法和官能团对诱导聚苯胺的电学特性起着关键作用。当使用二次薄膜掺杂方法和对甲苯磺酸时,二次掺杂聚苯胺的电导率从0.16 S/cm提高到334 S/cm。开发了一种新型的气相退火掺杂方法,将二次掺杂剂引入溶液浇铸的聚苯胺薄膜中。