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通过最小化微结构缺陷克服水处理纳米颗粒有机光伏的效率和稳定性限制。

Overcoming efficiency and stability limits in water-processing nanoparticular organic photovoltaics by minimizing microstructure defects.

机构信息

Institute of Materials for Electronics and Energy Technology (i-MEET), Department of Materials Science and Engineering, Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Martensstrasse 7, 91058, Erlangen, Germany.

Institute for Crystallography and Structural Physics, Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Staudtstrasse 3, 91058, Erlangen, Germany.

出版信息

Nat Commun. 2018 Dec 17;9(1):5335. doi: 10.1038/s41467-018-07807-5.

Abstract

There is a strong market driven need for processing organic photovoltaics from eco-friendly solvents. Water-dispersed organic semiconducting nanoparticles (NPs) satisfy these premises convincingly. However, the necessity of surfactants, which are inevitable for stabilizing NPs, is a major obstacle towards realizing competitive power conversion efficiencies for water-processed devices. Here, we report on a concept for minimizing the adverse impact of surfactants on solar cell performance. A poloxamer facilitates the purification of organic semiconducting NPs through stripping excess surfactants from aqueous dispersion. The use of surfactant-stripped NPs based on poly(3-hexylthiophene) / non-fullerene acceptor leads to a device efficiency and stability comparable to the one from devices processed by halogenated solvents. A record efficiency of 7.5% is achieved for NP devices based on a low-band gap polymer system. This elegant approach opens an avenue that future organic photovoltaics processing may be indeed based on non-toxic water-based nanoparticle inks.

摘要

市场强烈需要用环保溶剂来处理有机光伏材料。水基分散有机半导体纳米粒子(NPs)令人信服地满足了这些前提条件。然而,为了稳定 NPs,表面活性剂是必不可少的,这是实现水相处理器件有竞争力的功率转换效率的主要障碍。在这里,我们提出了一个概念,即最大限度地减少表面活性剂对太阳能电池性能的不利影响。聚氧乙烯-聚氧丙烯共聚物(poloxamer)有助于通过从水性分散体中去除多余的表面活性剂来纯化有机半导体 NPs。使用基于聚(3-己基噻吩)/非富勒烯受体的表面活性剂剥离 NPs 可以得到与使用卤代溶剂处理的器件相当的器件效率和稳定性。基于低带隙聚合物体系的 NP 器件实现了 7.5%的创纪录效率。这种优雅的方法为未来的有机光伏处理开辟了一条道路,未来的有机光伏处理可能确实基于无毒的水基纳米粒子油墨。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d38/6297219/fd6db846138a/41467_2018_7807_Fig1_HTML.jpg

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