Review on nanostructured semiconductors for dye sensitized solar cells

Nanostructured semiconductors with different morphologies are used widely in various applications in order to enhance their technological advancements compared with the bulk sample. This flourishing nanoscience field has enabled rapid developments that have created numerous opportunities for scienct...

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Published inElectronic materials letters Vol. 8; no. 3; pp. 231 - 243
Main Author Prakash, T.
Format Journal Article
LanguageEnglish
Published Dordrecht Springer Netherlands 01.06.2012
대한금속·재료학회
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ISSN1738-8090
2093-6788
DOI10.1007/s13391-012-1038-x

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Abstract Nanostructured semiconductors with different morphologies are used widely in various applications in order to enhance their technological advancements compared with the bulk sample. This flourishing nanoscience field has enabled rapid developments that have created numerous opportunities for scienctific advancements with various devices. Considering large environmental impacts such as global warming, problems of nuclear waste storage and nuclear accidents, there is an urgent need for environmentally sustainable energy technologies such as solar cells and fuel cells. In the present paper, the role of nanostructured semiconductors in dyesensitized solar cells (DSSCs) is reviewed entensively. The review discusses the present developmental prospects of DSSCs and the problems associated with its layer materials and propose a method of overcoming these problems.
AbstractList Nanostructured semiconductors with different morphologies are used widely in various applications in order to enhance their technological advancements compared with the bulk sample. This flourishing nanoscience field has enabled rapid developments that have created numerous opportunities for scienctific advancements with various devices. Considering large environmental impacts such as global warming, problems of nuclear waste storage and nuclear accidents, there is an urgent need for environmentally sustainable energy technologies such as solar cells and fuel cells. In the present paper, the role of nanostructured semiconductors in dyesensitized solar cells (DSSCs) is reviewed entensively. The review discusses the present developmental prospects of DSSCs and the problems associated with its layer materials and propose a method of overcoming these problems. KCI Citation Count: 63
Nanostructured semiconductors with different morphologies are used widely in various applications in order to enhance their technological advancements compared with the bulk sample. This flourishing nanoscience field has enabled rapid developments that have created numerous opportunities for scienctific advancements with various devices. Considering large environmental impacts such as global warming, problems of nuclear waste storage and nuclear accidents, there is an urgent need for environmentally sustainable energy technologies such as solar cells and fuel cells. In the present paper, the role of nanostructured semiconductors in dyesensitized solar cells (DSSCs) is reviewed entensively. The review discusses the present developmental prospects of DSSCs and the problems associated with its layer materials and propose a method of overcoming these problems.
Author Prakash, T.
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  surname: Prakash
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Keywords hole transporters
dye-sensitized solar cells
nanostructured semiconductors
heterojunctions
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대한금속·재료학회
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Snippet Nanostructured semiconductors with different morphologies are used widely in various applications in order to enhance their technological advancements compared...
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SubjectTerms Characterization and Evaluation of Materials
Chemistry and Materials Science
Condensed Matter Physics
Materials Science
Nanotechnology
Nanotechnology and Microengineering
Optical and Electronic Materials
Review Paper
전자/정보통신공학
Title Review on nanostructured semiconductors for dye sensitized solar cells
URI https://link.springer.com/article/10.1007/s13391-012-1038-x
https://www.kci.go.kr/kciportal/ci/sereArticleSearch/ciSereArtiView.kci?sereArticleSearchBean.artiId=ART001668137
Volume 8
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ispartofPNX Electronic Materials Letters, 2012, 8(3), , pp.231-243
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