Issue 20, 2018

Engineered exciton diffusion length enhances device efficiency in small molecule photovoltaics

Abstract

In organic photovoltaic blends, there is a trade-off between exciton harvesting and charge extraction because of the short exciton diffusion length. Developing a way of increasing exciton diffusion length would overcome this trade-off by enabling efficient light harvesting from large domains. In this work, we engineered (enhanced) both exciton diffusion length and domain size using solvent vapour annealing (SVA). We show that SVA can give a three-fold enhancement in exciton diffusion coefficient (D) and nearly a doubling of exciton diffusion length. It also increases the domain size, leading to enhancement of charge extraction efficiency from 63 to 89%. Usually larger domains would reduce exciton harvesting but this is overcome by the large increase in exciton diffusion, leading to a 20% enhancement in device efficiency.

Graphical abstract: Engineered exciton diffusion length enhances device efficiency in small molecule photovoltaics

Supplementary files

Article information

Article type
Paper
Submitted
05 Feb 2018
Accepted
18 Apr 2018
First published
19 Apr 2018

J. Mater. Chem. A, 2018,6, 9445-9450

Engineered exciton diffusion length enhances device efficiency in small molecule photovoltaics

M. T. Sajjad, O. Blaszczyk, L. K. Jagadamma, T. J. Roland, M. Chowdhury, A. Ruseckas and I. D. W. Samuel, J. Mater. Chem. A, 2018, 6, 9445 DOI: 10.1039/C8TA01226A

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