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Sustainable Design of Photovoltaics: Devices and Quantum Information

Sustainable Design of Photovoltaics: Devices and Quantum Information
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Author(s): Mihai V. Putz (West University of Timişoara, Romania & Research and Development National Institute for Electrochemistry and Condensed Matter (INCEMC) Timişoara, Romania), Marina A. Tudoran (West University of Timişoara, Romania & Research and Development National Institute for Electrochemistry and Condensed Matter (INCEMC) Timişoara, Romania), Marius C. Mirica (Research and Development National Institute for Electrochemistry and Condensed Matter (INCEMC) Timișoara, Romania), Mirela I. Iorga (Research and Development National Institute for Electrochemistry and Condensed Matter (INCEMC) Timișoara, Romania), Radu Bănică (Research and Development National Institute for Electrochemistry and Condensed Matter (INCEMC) Timișoara, Romania), Ștefan D. Novaconi (Research and Development National Institute for Electrochemistry and Condensed Matter (INCEMC) Timișoara, Romania), Ionel Balcu (Research and Development National Institute for Electrochemistry and Condensed Matter (INCEMC) Timișoara, Romania), Ștefania F. Rus (Research and Development National Institute for Electrochemistry and Condensed Matter (INCEMC) Timișoara, Romania)and Ana-Maria Putz (Institute of Chemistry Timișoara of Romanian Academy, Romania & West University of Timișoara, Romania)
Copyright: 2017
Pages: 78
Source title: Renewable and Alternative Energy: Concepts, Methodologies, Tools, and Applications
Source Author(s)/Editor(s): Information Resources Management Association (USA)
DOI: 10.4018/978-1-5225-1671-2.ch013

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Abstract

With the ever present-to-future need of renewable energy the main features of photo-electrochemistry processes are reviewed and described from the perspective of devices phenomenology serving to sustainable design of photovoltaics, while providing the quantum insight in terms of data observability and interpretation. At the same time, the photovoltaic cell “enriched” with quantum dots is presented as a “milestone for obtaining green energy”, a perspective opened by the developing of recent nanotechnology. Nevertheless, this new approach is referring to both theoretical and experimental aspects, both equally needed in order to find a way to develop efficient and ecological photovoltaic devices. Finally, bondonic information for molecules activated in mesoscopic scale are determined while combining their FT-IR spectra with photovoltaic fill factor and metrological quantum triangle (electron tunneling, Josephson effect and quantum Hall effect) towards challenging new perspective of sub-quantum interaction in condensed nano-matter.

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