前往化源商城

Nanoscale 2015-07-28

Dispelling clichés at the nanoscale: the true effect of polymer electrolytes on the performance of dye-sensitized solar cells.

Federico Bella, Adriano Sacco, Giulia Massaglia, Angelica Chiodoni, Candido Fabrizio Pirri, Marzia Quaglio

文献索引:Nanoscale 7 , 12010-7, (2015)

全文:HTML全文

摘要

In the field of dye-sensitized solar cells, polymer electrolytes are among the most studied materials due to their ability to ensure both high efficiency and stability, the latter being a critical point of these devices. Hundreds of polymeric matrices have been proposed over the years, and their functionalization with several groups, the variation of their molecular weight and the tuning of the crosslinking degree have been investigated. However, the true effect that polymeric matrices have on the cell parameters has often been addressed superficially, and hundreds of papers justify the obtained results with a simple bibliographic reference to other systems (sometimes completely different). This work proposes a system of nanoscale growth and crosslinking of a polymer electrolyte inside a nanostructured photoanode. Electrochemical and photovoltaic parameters are carefully monitored as a function of thickness and degree of penetration of the electrolyte. The results derived from this study refute many clichés generally accepted and taken for granted in many literature articles, and – for the first time – a compromise between the amount of polymer, cell efficiency and stability is achieved.

相关化合物

结构式 名称/CAS号 全部文献
氯仿 结构式 氯仿
CAS:67-66-3
乙醇 结构式 乙醇
CAS:64-17-5
丙酮 结构式 丙酮
CAS:67-64-1
乙腈 结构式 乙腈
CAS:75-05-8
碘 结构式
CAS:7553-56-2
三丁基膦 结构式 三丁基膦
CAS:998-40-3
碘化钠 结构式 碘化钠
CAS:7681-82-5
双酚a 结构式 双酚a
CAS:80-05-7
4-叔丁基吡啶 结构式 4-叔丁基吡啶
CAS:3978-81-2