Study of optical properties of CuInSe2 thin film (original) (raw)

Studies on optical characteristics of CuInSe2 thin films

Mohammad Arif Sobhan Bhuiyan

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The preparation and properties of CuInSe(2) thin films and CuInSe(2)/CdS thin film solar cells

Henry Tiedje

1997

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Optical Constants of CuInSe 2 Thin Films Prepared by Two-Stage Process

Bulent Basol

Physica Scripta, 2005

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Characterization of CuInSe2 thin films elaborated

O. Meglali, N. Attaf

2008

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Investigation of the optical properties of CuIn (Se,S)2 thin films for photovoltaic application

Dr.Amal Bouich

Materials Today: Proceedings, 2019

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Effect of high intensity light irradiance on CuInSe2 thin films

Chang Chung Bin

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Characterization of CuInTe2 thin film synthesized by three source co-evaporation technique

Dr. Baibaswata Bhattacharjee

Materials Chemistry and Physics, 2003

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Thin Film Deposition Methods for CuInSe 2 Solar Cells

Marianna Kemell

Critical Reviews in Solid State and Materials Sciences, 2005

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Preparation and characterization of vacuum deposited CuInSe2 thin films

Lawrence Kazmerski

Solar Cells, 1986

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Optical properties and band gap energy of CuInSe2 thin films prepared by two-stage selenization process

M. Yakushev

Journal of Physics and Chemistry of Solids, 2003

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CuInSe 2 (CIS) as A light Absorption Layer of Photovoltaic Solar-Cells

Omar A Ali

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CuInS2 Ternary Compound as Absorption Layer for Solar Cell Fabrication

bahaa T. Chiad

Iraqi Journal of Physics, 2009

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Composition and structure of CuInSe2 thin films prepared by vaccum evaporation of the constituent elements

Lawrence Kazmerski

Solar Cells, 1984

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Structural and optical characterization of CuInSe2 films deposited by hot wall vacuum evaporation method

Velumani Subramaniam

Vacuum, 2007

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CuInSe2 based solar cell structures by CVTG

Arturo Fernandez

Applied Energy, 1995

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Preparation and characterization of CuIn 0.3Al 0.7Se 2 thin films for tandem solar cells

Bharath Reddy

Solar Energy Materials and Solar Cells, 2006

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Tailoring the composition and properties of CuInSe<formula><inf><roman>2</roman></inf></formula> materials for solar cell application

Marit Kauk-kuusik, Kaia Ernits

2005

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High efficiency CuInSe2 based heterojunction solar cells: Fabrication and results

R. Birkmire

Solar Cells, 1986

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The performance of CuInSe2 monograin layer solar cells with variable indium content

Marit Kauk-kuusik, T. Varema, M. Altosaar

Thin Solid Films, 2007

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Effect of thickness and substrate temperature on structure and optical band gap of hot wall-deposited CuInSe2 polycrystalline thin films

G. Mohan Rao

Physica B: Condensed …, 2005

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Optical, electrical and structural characterization of CuInSe2 thin films

Dr. Robina Farooq

physica status solidi (b), 2005

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Low cost CuInSe 2 thin films production by stacked elemental layers process for large area fabrication of solar cell application

Balram Tripathi

Materials Chemistry and Physics

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Studies on Chemically Deposited Nonstoichiometric Thin Films of CuInSe2 -a Highly Promising Material for Photosensors

Lalchand Patil

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The formation of CuInSe2 thin films by rapid thermal processing

A. Hermann

Solar Cells, 1991

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Optical, structural and electrical properties of co-evaporated CuIn2Se3.5 thin films

Inaki Zalakain

Materials Letters, 2004

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Reflectance and absorption spectra near the band gap in CuInSe2

juan luis ostos gonzalez

Solid State Communications, 1983

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Advances in CuInSe2 and CdTe thin film solar cells

R. Birkmire

Solar Cells, 1991

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Characterization of CuInSe 2 material and devices: comparison of thermal and electrochemically prepared absorber layers

Ian Forbes

Journal of Physics D: Applied Physics, 2008

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Optical manipulation of temperature formation of CuInSe2 thin films

Alaa A . S . Akl

Materials Science and …, 2006

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Structural and photoelectrical characterization of hot wall deposited CuInSe2 thin films and the fabrication of CuInSe2 based solar cells

Vijay Singh

Materials Characterization, 2007

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Preparation CuInSe2 (CIS) by arrested precipitationmethod as alight absorption layer of photovoltaic solar-cells

Wasan Saleh

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