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Featured researches published by B. Krishnan.


RSC Advances | 2018

Copper antimony sulfide thin films for visible to near infrared photodetector applications

V. Vinayakumar; S. Shaji; D. Avellaneda; J.A. Aguilar-Martínez; B. Krishnan

Ternary chalcostibite copper antimony sulfide (CuSbS2) is an emerging semiconductor material having applications in photovoltaics, energy storage and optoelectronics due to its high absorption coefficient, suitable bandgap, and it consists of non-toxic and earth abundant elements. CuSbS2 thin films are prepared by combining chemical bath deposition (antimony sulfide (Sb2S3)) and thermal evaporation (copper (Cu)) followed by a heat treatment and their application as visible to near infrared photodetectors is reported. Crystalline structure, elemental composition, chemical state, morphology and optoelectronic properties of the films were characterized by various techniques. The effect of three different Cu thicknesses (CAS 20, CAS 30 and CAS 40 nm) on the photodetection properties are evaluated under illumination using light emitting diodes (LEDs) and a laser. The photodetectors fabricated are successfully tested under different wavelengths, power densities and applied voltage and their photoresponse cyclic stability for each wavelength of illumination was recorded. From the sensitivity calculations, the sample with 20 nm Cu thickness (CAS 20) showed higher detection sensitivity for visible to near infrared wavelengths. Better responsivity results were obtained for CAS 40 because of its improved crystallinity and phase purity. Photodetector properties such as sensitivity and responsivity are evaluated for all the samples. These results are beneficial for cost effective and environment friendly photodetectors and optoelectronic devices based on CuSbS2 thin films.


Solar Energy Materials and Solar Cells | 2011

p-Type CuSbS2 thin films by thermal diffusion of copper into Sb2S3

C. Garza; S. Shaji; A. Arato; E. Pérez Tijerina; G. Alan Castillo; T.K. Das Roy; B. Krishnan


Applied Surface Science | 2008

On the structure, morphology, and optical properties of chemical bath deposited Sb2S3 thin films

B. Krishnan; A. Arato; E. Cardenas; T.K. Das Roy; G.A. Castillo


Solar Energy Materials and Solar Cells | 2009

Carbon-doped Sb2S3 thin films: Structural, optical and electrical properties

Emma Cárdenas; A. Arato; E. Perez-Tijerina; T.K. Das Roy; G. Alan Castillo; B. Krishnan


Solar Energy Materials and Solar Cells | 2017

CuSbS2 thin films by rapid thermal processing of Sb2S3-Cu stack layers for photovoltaic application

V. Vinayakumar; S. Shaji; D. Avellaneda; T.K. Das Roy; G.A. Castillo; J.A.A. Martinez; B. Krishnan


Applied Surface Science | 2011

AgSbSe2 and AgSb(S,Se)2 thin films for photovoltaic applications

J.G. Garza; S. Shaji; A.C. Rodriguez; T.K. Das Roy; B. Krishnan


Materials Chemistry and Physics | 2015

Structure and morphologies of ZnO nanoparticles synthesized by pulsed laser ablation in liquid: Effects of temperature and energy fluence

G. García Guillén; M. I. Mendivil Palma; B. Krishnan; D. Avellaneda; G.A. Castillo; T.K. Das Roy; S. Shaji


Applied Surface Science | 2017

Antimony sulfide thin films prepared by laser assisted chemical bath deposition

S. Shaji; L.V. Garcia; S.L. Loredo; B. Krishnan; J.A. Aguilar Martinez; T.K. Das Roy; D. Avellaneda


Thin Solid Films | 2009

Sb2S3:C/CdS p–n junction by laser irradiation

A. Arato; E. Cardenas; S. Shaji; J. J. O'Brien; J Liu; G. Alan Castillo; T.K. Das Roy; B. Krishnan


Applied Surface Science | 2012

In6Se7 thin films by heating thermally evaporated indium and chemical bath deposited selenium multilayers

R.E. Ornelas; D. Avellaneda; S. Shaji; G.A. Castillo; T.K. Das Roy; B. Krishnan

Collaboration


Dive into the B. Krishnan's collaboration.

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S. Shaji

Universidad Autónoma de Nuevo León

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T.K. Das Roy

Universidad Autónoma de Nuevo León

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D. Avellaneda

Universidad Autónoma de Nuevo León

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A. Arato

Universidad Autónoma de Nuevo León

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G.A. Castillo

Universidad Autónoma de Nuevo León

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G. Alan Castillo

Universidad Autónoma de Nuevo León

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E. Cardenas

Universidad Autónoma de Nuevo León

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J.A. Aguilar Martinez

Universidad Autónoma de Nuevo León

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L.V. Garcia

Universidad Autónoma de Nuevo León

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V. Vinayakumar

Universidad Autónoma de Nuevo León

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