Amorphous and Polycrystalline Thin Film Silicon Science and Technology - 2009: Volume 1153 (MRS Proceedings) » holypet.ru

Amorphous and polycrystalline thin-film silicon science.

Jun 05, 2014 · Amorphous and Polycrystalline Thin Film Silicon Science and Technology - 2009: Volume 1153 MRS Proceedings 1st Edition by Andrew Flewitt Editor, Jack Hou Editor, Arokia Nathan Editor, Qi Wang Editor, Shuichi Uchikoga Editor & 2 more. Apr 14, 2017 · ISBN: 9781605111261 1605111260: OCLC Number: 505808160: Notes: "Symposium A, 'Amorphous and Polycrystalline Thin-Film Silicon Science and Technology -- 2009,' held April 14-17 at the 2009 MRS Spring Meeting in San Francisco, California."--Preface p. xv.

Apr 14, 2017 · Get this from a library! Amorphous and polycrystalline thin-film silicon science and technology--2009: symposium held April 14-17, 2009, San Francisco, California, U.S.A. [Andrew Flewitt; Materials Research Society. Fall Meeting;]. Jan 31, 2011 · In recent years, several technologies have been developed that promise to take the performance of thin-film silicon PVs well beyond that of the currently established amorphous Si PV technology. Thin-film silicon, like no other thin-film material, is very effective in tandem and triple-junction solar cells. Jan 31, 2011 · Volume 1153 Symposium A – Amorphous and Polycrystalline Thin Film Silicon Science and Technology–2009 2009, 1153-A07-03 Improvement of Quantum Efficiency of Amorphous Silicon Thin Film Solar Cells. Apr 26, 2012 · This paper reviews our thin film silicon-based photovoltaic PV technology, including material and device studies as well as roll-to-roll manufacturing on a flexible substrate. Our current thin film silicon PV products are made with hydrogenated amorphous silicon a-Si:H and amorphous silicon germanium a-SiGe:H alloys.The advantages of a-Si:H-based technology are low cost,. This paper reviews our thin film silicon-based photovoltaic PV technology, including material and device studies as well as roll-to-roll manufacturing on a flexible substrate. Our current thin film silicon PV products are made with hydrogenated amorphous silicon a-Si:H and amorphous silicon germanium a-SiGe:H alloys. The advantages of a-Si:H-based technology are low cost, capability of.

Amorphous and Polycrystalline Thin-Film Silicon Science and Technology - 2007: Volume 989 MRS Proceedings [Chu, Virginia, Miyazaki, Seiichi, Nathan, Arokia, Yang, Jeffrey, Zan, Hsiao-Wen] on. FREE shipping on qualifying offers. Amorphous and Polycrystalline Thin-Film Silicon Science and Technology - 2007: Volume 989 MRS Proceedings. MRS Proceedings, Vol. 1153, Issue., CrossRef;. Smole, F. Topic, M.: Novel approaches of light management in thin-film silicon solar cells in Amorphous and Polycrystalline Thin-Film Silicon Science and Technology—2006, edited by S. Wagner, V. Chu, H.A. Plasmonic effects in amorphous silicon thin film solar cells with metal back contacts. Dec 01, 2013 · The record SPC poly-Si thin-film solar cell device has been developed by CSG Solar formerly Pacific Solar in Sydney with an efficiency of 10.4% demonstrated in the year 2007.Here, a textured borosilicate glass with a thermal expansion coefficient very close to that of silicon is used as a substrate, on which a silicon oxinitride diffusion barrier and an 1–2 µm thick npp -doped a-Si. Apr 15, 2011 · Rath, M. M. de Jong, A. Verkerk, M. Brinza, and R. E. I. Schropp, Amorphous and Polycrystalline Thin Film Silicon Science and Technology, MRS Symposia Proceedings No. 1153 Materials Research Society, Pittsburgh, 2009, p. A22. J. Yang, B. Yan, G. Yue, S. GuhaLight trapping in hydrogenated amorphous and nano-crystalline silicon thin film solar cells MRS Proceedings, 1153 2009, 10.1557/PROC-1153-A13-02 1153-A1113-1102.

Volume 1153 Symposium A – Amorphous and Polycrystalline Thin Film Silicon Science and Technology–2009 2009, 1153-A16-07 Hole Drift Mobility Measurements on a-Si:H using Surface and Uniformly Absorbed Illumination Steluta Adriana Dinca a1, Eric A Schiff a2, Subhendu Guha a3, Baojie Yan a4 and Jeff Yang a5. Volume 1066 Symposium A – Amorphous and Polycrystalline Thin-Film Silicon Science and Technology—2008 2008, 1066-A11-01 Magnetic Resonance in Hydrogenated Nanocrystalline Silicon Thin Films.

In A Flewitt, Q Wang, J Hou, S Uchikoga & A Nathan Eds., Amorphous and polycrystalline thin-film science and technology 2009 Vol. 1153. Materials Research Society Symposium Proceedings pp. 1-6. Warrendale: Materials Research Society symposium proceedings. Sep 01, 2012 · Since nanocrystalline silicon has a much larger hole drift-mobility than amorphous silicon, we might speculate that there is gradual evolution in the growing film from a lower to a higher hole drift-mobility. 5. Conclusions. We have applied the photocapacitance method to the measurements of hole drift-mobilities in silicon solar cells. Jul 22, 2016 · The chapter introduces the basic principles of photovoltaics, and highlights the specific material and device properties that are relevant for thin‐film solar cells. In general, there are two configurations possible for any thin‐film solar cell. The first possibility is that light enters the device through a transparent superstrate. Dec 28, 2009 · Yang, B. Yan, G. Yue, and S. Guha, Amorphous and Polycrystalline Thin-Film Silicon Science and Technology-2009, MRS Symposia Proceedings No. 1153 Materials Research Society, Pittsburgh, 2009. Google Scholar. Feb 21, 2011 · Abstract. Amorphous Si/SiC photodiodes working as photo-sensing or wavelength sensitive devices have been widely studied. In this paper single and stacked a-SiC:H p-i-n devices, in different geometries and configurations, are reviewed.

1. Introduction. The aluminum-induced layer exchange ALILE process based on the aluminum-induced crystallization AIC has gained significant attention over the last two decades for its ability to form continuous polycrystalline Si thin films with relatively big grain size films with the grains larger than 50 μm were reported and controlled crystalline orientation,,, on the. Hitoshi Sai, Yoshiaki Kanamori, Michio Kondo, Light Trapping in Thin-film μc-Si:H Solar Cells using Self-ordered 2D Grating Reflector, MRS Proceedings, 10.1557/PROC-1153-A03-03, 1153, 2011. Crossref.

MRS Symposium 2009 has title: Symposium A – Amorphous and Polycrystalline Thin Film Silicon Science and Technology–2009-scription.abstract: We have investigated the local electron transport in polycrystalline silicon pc-Si thin-films by atomic force microscopy AFM-based measurements of the electron-beam-induced current EBIC. Jun 25, 2010 · Ten new results are reported in the present version of these tables. The first new result in Table I is a new record for a single‐junction cell of any type under non‐concentrated sunlight. An efficiency of 26.4% is reported for a 1 cm 2 GaAs cell fabricated and measured by the Fraunhofer Institute for Solar Energy Systems FhG‐ISE. Another significant new result in Table I is the first. Rigorous diffraction theory is a reliable tool to quantify the absorption enhancement in textured thin film solar cells. We provide a line of arguments that make the insights from such an involved.

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