Thin-Film Compound Semiconductor Photovoltaics: Volume 865 (MRS Proceedings) »

p-ZnTe for Back Contacts to CdTe Thin Film Solar Cells.

The pentenary chalcopyrite compound CuInGaSeS 2 provides several potential advantages over CuInGaSe 2 as the absorber layer in thin film solar cells, especially with wide bandgap alloys. The effects of S addition to the quaternary alloy are investigated with films deposited by elemental thermal co-evaporation and by the reaction of metallic precursors in hydride gases. MATERIALS RESEARCH SOCIETY SYMPOSIUM PROCEEDINGS VOLUME 1012 Thin-Film Compound Semiconductor Photovoltaics—2007 Symposium held April 9-13, 2007, San Francisco, California, U.S.A. EDITORS: Timothy Gessert National Renewable Energy Laboratory Golden, Colorado, U.S.A. Ken Durose Durham University Durham, United Kingdom Clemens Heske. Materials Research Society symposium proceedings. 1012.Thin-film compound semiconductor photovoltaics 2007: symposium held April 9-13, 2007, San Francisco, California, U.S.A. T3 - Materials Research Society Symposium Proceedings. SP - 153. EP - 158. BT - Thin-Film Compound Semiconductor Photovoltaics - 2009. T2 - 2009 MRS Spring Meeting. Y2 - 13 April 2009 through 17 April 2009. ER

Volume 1012 Symposium Y – Thin-Film Compound Semiconductor Photovoltaics-2007 2007, 1012-Y03-08 Electroluminescence from CuIn,GaSe 2 Thin-film Solar Cells. Semiconductor Photovoltaics, MRS Symposia Proceedings No. 1165. pound Semiconductor Photovoltaics, MRS Symposia Proceedings No. 763. Thin film photovoltaics. 978-1-107-40896-8 - Materials Research Society Symposium Proceedings: Volume 865: Thin-Film Compound Semiconductor Photovoltaics Editors: William Shafarman, Timothy Gessert, Shigeru Niki and Susanne Siebentritt Excerpt More information. Jan 01, 2012 · Back then, production of thin-film solar modules reached for the first time more than 100 MW per annum. Since then, the Compound Annual Growth Rate CAGR of thin-film solar module production was even beyond that of the overall industry, increasing the market share of thin-film products from 6% in 2005 to 10% in 2007 and 16–20% in 2009. The symposia that have been combined to compose this volume - Symposium B: 'Thin Film Compound Semiconductor Photovoltaics', Symposium C: 'Perovskite Solar Cells', Symposium D: 'Organic-Based Photovoltaics', and Symposium E: 'Advance Solar Cells-Components to Systems' - were held from April 6-10 at the 2015 MRS Spring Meeting in San Francisco.

We report a summary of our recent study of piezo- and pyroelectricity in CdS-based photovoltaics including CdTe and CuInGaSe2 absorber devices. The strong pyro- and piezo-effects in CdS significantly affect the electric field distribution and the physics of device operations. We introduce the concept of pyro-photovoltaic coupling where the photovoltaic effect and the CdS polarization. 1. Introduction. Standard, chalcopyrite-based, thin film solar modules are commercially produced on rigid glass substrates. Thin film solar cell technology, however, has the advantage that it can be processed on flexible, light-weight substrates such as polyimide, titanium or steel foils,.CuIn,GaSe 2 CIGSe on stainless steel holds a record efficiency of 17.5%. Arnulf Jäger-Waldau, Progress in Chalcopyrite Compound Semiconductor Research for Photovoltaic Applications and Transfer of Results into Actual Solar Cell Production, Practical Handbook of Photovoltaics, 10.1016/B978-0-12-385934-1.00011-8, 373-395, 2012.

Apr 01, 2005 · ISBN: 1558998187 9781558998186 9781107408968 pbk. 1107408962 pbk: OCLC Number: 62704426: Notes: "Symposium F, 'Thin-Film Compound Semiconductor Photovoltaics, ' held March 29-April 1 at the 2005 MRS Spring Meeting in San Francisco, California."--Preface. Apr 01, 2005 · Get this from a library! Thin-film compound semiconductor photovoltaics: symposium held March 29-April 1, 2005, San Francisco, California, U.S.A. [William Shafarman; Materials Research Society. Fall Meeting Symposium F.;]. Equations describing the electroluminescence EL intensity as a function of material properties are derived for thin film solar cells and experimentally validated using CuIn,GaSe2 solar cells. E. Aug 31, 2011 · 1. Introduction. The efficiency of thin film solar cells using vacuum deposited CuInSe 2 CIS based absorber material layers, such as CuInS,Se 2 CISS and CuInGaSe 2 CIGS, has reached almost 20% during the last decade.At the same time, electrochemical deposition ECD has also been proven to be a viable alternative technique in growing high efficiency thin film solar cells. Polycrystalline compound semiconductors, in particular II–VI and I–III–VI 2 compounds, are considered as important options for low cost photovoltaics. Devices with conversion efficiencies of more than 12% have been realized.

May 25, 2015 · Analysis of ZnS segregation behaviour and its influence on the device performance has been made on the Zn-rich Cu 2 ZnSnS 4 thin film solar cells. Cross-sectional transmission electron microscopy images reveal that ZnS is the main secondary phase in the Cu 2 ZnSnS 4 layer obtained from a sulphurised Zn/CuSn metallic stack. The excess Zn diffuses from back contact region to top surface. Equations describing the electroluminescence EL intensity as a function of material properties are derived for thin film solar cells and experimentally validated using CuIn,GaSe2 solar cells. EL intensity at constant voltage is controlled by the electronic properties of the neutral bulk even when the diode current is controlled by recombination in the space charge region. Apr 30, 2008 · The limiting efficiency of an intermediate band IB solar cell under the terrestrial AM1.5 spectrum was calculated by detailed balance for various concentration levels. The results show four energy gap combinations giving similar limiting efficiencies. This is in contrast to the more studied case of an IB solar cell under a blackbody spectrum where a single optimum combination is found.

Mar 17, 2008 · Doping distributions in the CuIn,GaSe2 solar cells with various gallium contents are analyzed by the use of capacitance-voltage and drive-level capacitance profiling. The influence of deep traps on the evaluation of the spatial-doping distribution in the bulk of CuIn,GaSe2 absorbers is discussed. An analysis is presented, which shows that traps labeled N1, commonly observed in these. OCLC Number: 326777108: Notes: "This volume contains selected papers presented at Symposium B, 'Compound Semiconductor Photovoltaics, ' held April 22-25 at the 2003 MRS Spring Meeting in San Francisco, California."--Page xiii. Dec 06, 2019 · Jaegermann W. 2005 Thin Film Compound Semiconductor Photovoltaics MRS Spring Meeting Symposium p. 150 in, San Francisco, CA, F6.1; Google Scholar Hermann D., Kessler F. and Powalla M. 2005 Thin Film Compound Semiconductor Photovoltaics MRS Spring Meeting Symposium p. 164, San Francisco, CA F15.1. The CIGS thin film solar cells fabricated at 160 °C shows best efficiency of 11.6% in this series due to the relatively higher open circuit voltage Voc and fill factor FF as well as a high. Symposium on Thin-Film Compound Semiconductor Photovoltaics held at the 2005 MRS Spring Meeting, Date: MAR 29-APR 01, 2005 San Francisco THIN-FILM COMPOUND SEMICONDUCTOR PHOTOVOLTAICS Volume: 865 Pages: 209-213 Published: 2005 37. K. G. Lisunov, E. Arushanov, H. Vinzelberg, G. Behr and J. Schumann, Hopping.

  1. 978-1-107-40896-8 - Materials Research Society Symposium Proceedings: Volume 865: Thin-Film Compound Semiconductor Photovoltaics Editors: William Shafarman, Timothy Gessert, Shigeru Niki and Susanne Siebentritt Frontmatter More information.
  2. Volume 865 Symposium F – Thin-Film Compound Semiconductor Photovoltaics 2005, F8.3 p-ZnTe for Back Contacts to CdTe Thin Film Solar Cells Bettina Späth a1, Jochen Fritsche a1, Andreas Klein a1 and Wolfram Jaegermann a1.
  3. Feb 01, 2011 · AgIn 1-x Ga xSe 2 thin films have been deposited on Mo-coated soda-lime glass substrates by the three-stage process using a molecular beam epitaxy MBE system. We found a remarkable decrease in the substrate temperature during the 2nd stage in which the film composition changes to a Ag excess. A single phase chalcopyrite AIGS thin film with a slightly Ag poor.
  4. Feb 01, 2011 · Volume 865 Symposium F – Thin-Film Compound Semiconductor Photovoltaics 2005, F5.12 Structural Properties of Ag-Based Chalcopyrite Compound Thin Films for Solar Cells Hiroki Ishizaki a1, Keiichiro Yamada a1, Ryouta Arai a1, Yasuyuki Kuromiya a1, Yukari Masatsugu a1, Naoomi Yamada a1 and Tokio Nakada a1.

D. Wolf and G. Müller, In-Situ Investigation of Cu-In-Se Reactions by Thin Film Calorimetry, MRS Proceedings, 485, 1997. Crossref Takahiro Wada, Naoki Kohara, Takayuki Negami and Mikihiko Nishitani, Growth of CuInSe 2 crystals in Cu-rich Cu–In–Se thin films, Journal of Materials Research, 10.1557/JMR.1997.0200, 12, 6, 1456-1462. materials research society symposium proceedings Volume 1153 — Amorphous and Polycrystalline Thin-Film Silicon Science and Technology — 2009, A. Flewitt, Q. Wang, J. Hou, S. Uchikoga, A. Nathan, 2009, ISBN 978-1-60511-126-1.

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