Antireflection composite coatings for organic solar cells


Citar

Texto integral

Acesso aberto Acesso aberto
Acesso é fechado Acesso está concedido
Acesso é fechado Somente assinantes

Resumo

Experimental studies on increasing the transmittance of a light–receiving element (LRE) by applying an antireflection coating were carried out. As an antireflection coating on the solar furnace, the fluoride composite material MgF2–CaF2 was synthesized. Transmission spectra of the LRE without the antireflection coating and with the antireflection coating were measured. The effect of translucence (increase of transmittance) of the LRE after applying the antireflection coating is observed in the spectral region of 0.4–1.1 μm.

Sobre autores

S. Suleimanov

Institute of Material Sciences of Physical–Technical Institute Physics of the Sun

Autor responsável pela correspondência
Email: sultan@uzsci.net
Uzbequistão, Tashkent

P. Berger

Ohio State University

Email: sultan@uzsci.net
Estados Unidos da América, 2015 Neil Avenue, Columbus, Ohio, 43210

V. Dyskin

Institute of Material Sciences of Physical–Technical Institute Physics of the Sun

Email: sultan@uzsci.net
Uzbequistão, Tashkent

M. Dzhanklich

Institute of Material Sciences of Physical–Technical Institute Physics of the Sun

Email: sultan@uzsci.net
Uzbequistão, Tashkent

A. Bugakov

Institute of Material Sciences of Physical–Technical Institute Physics of the Sun

Email: sultan@uzsci.net
Uzbequistão, Tashkent

O. Dudko

Institute of Material Sciences of Physical–Technical Institute Physics of the Sun

Email: sultan@uzsci.net
Uzbequistão, Tashkent

N. Kulagina

Institute of Material Sciences of Physical–Technical Institute Physics of the Sun

Email: sultan@uzsci.net
Uzbequistão, Tashkent

M. Kim

Ohio State University

Email: sultan@uzsci.net
Estados Unidos da América, 2015 Neil Avenue, Columbus, Ohio, 43210

Arquivos suplementares

Arquivos suplementares
Ação
1. JATS XML

Declaração de direitos autorais © Allerton Press, Inc., 2016