Study of photovoltaic solar materials development trend by deductive logic method using big data

Author:

Su Yi-Huei,Wu Jung-Hua

Abstract

Abstract In recent years, the development of solar materials in the field of science and technology has experienced many major breakthroughs. This study collects relevant data to evaluate the development of solar energy technology based on deductive reasoning approach in the popular types, and then utilize big data to investigate the trend of smart materials development in solar energy research. This study aims to understand the impact of materials science on the development of photovoltaic solar energy and understand the trends in the research field from the number of published journals in past years. The period of study in this paper is from 1970 to 2018. The research scope is limited to an analysis of solar journals from Web of Science®, which indicates that various solar materials have very obvious difference in growth trends. From 1970 to 2010, although the United States was the country with the largest number of published solar journals, the percentage gradually decreased. Then from 2011 to 2018, China became the first among the top countries in solar energy materials publications.Among them, the field of “Dye-sensitized solar” grew the most, the highest research publications in the field of solar energy research is “Materials science”.

Publisher

IOP Publishing

Subject

General Medicine

Reference40 articles.

1. Complementing carbon prices with technology policies to keep climate targets within reach;Bertram;Nature climate change,2015

2. Metallic nanostructures for light trapping in energy-harvesting devices;Guo;Light: Science & Applications,2015

3. Light concentration using hetero-junctions of anisotropic low permittivity metamaterials;Memarian;Light: Science & Applications,2013

4. Surface plasmon resonance of Au-Cu bimetallic nanoparticles predicted by a quasi-chemical model;Su;Nanoscale Research Letters,2013

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