Optical optimization of organic solar cell with bulk heterojunction

Author:

Gondek E.

Abstract

AbstractThe work is devoted to the optimization of layer thickness in an organic photovoltaic cell. It presents the applied calculation method which is based on the optical transfer matrix 2×2 formalism. We present the influence of thickness of a PEDOT:PSS layer and of an active layer on the normalized modulus squared of optical electric fields distribution inside devices and on the distributions of exciton generation rate. We present the relationship between optimal thicknesses of the PEDOT:PSS layer and the active layer. We also present the influence of antireflection coating on distributions of optical electrical fields, as well as the distributions of exciton generation rate. Perpendicular and oblique illumination of the photovoltaic structure is discussed.

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,Radiation,General Materials Science

Reference23 articles.

1. Optical modelling and analysis of organic solar cells with coherent multilayers and incoherent glass substrate using generalized transfer matrix method;Jung;Appl Phys,2011

2. Optical optimization of organic solar cells;Gondek;Mater,2013

3. Organic solar cells : An over view Small molecu lar weight organic thin film photodetectors and solar cells;Hoppe;Mater Res Appl Phys,2004

4. Determina tion of the optical constants of polymer light emitting diode films from single reflection measurements;Zhu;Appl Phys,2008

5. Influence of TiO nano particles on the photovoltaic efficiency of the ITO PSS / fluorine copolymers / polythiophene : TiO architec ture;Gondek;Mater Sci Mater El,2012

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