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Band Gap Tuning and Room-Temperature Photoluminescence of a Physically Self-Assembled Cu2O Nanocolumn Array

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dc.contributor.author Mukherjee, I.
dc.contributor.author Chatterjee, S.
dc.contributor.author Kulkarni, N.A.
dc.date.accessioned 2018-10-01T12:26:12Z
dc.date.available 2018-10-01T12:26:12Z
dc.date.issued 2016
dc.identifier.citation Journal Of Physical Chemistry C, 120(2), 2016: 1077-1082
dc.identifier.issn 1932-7447
dc.identifier.uri http://ore.immt.res.in/handle/2018/2196
dc.description DST, India [IFA12-CH-65]
dc.description.abstract The morphology modification of nanostructured materials is of great interest due to controllable and unusual inherent properties in such materials. In this work, growth and morphology evolution of a well-separated Cu2O nanocolumn array is explored by tuning deposition angle and substrate rotation speed in oblique angle deposition (OAD). X-ray diffraction and photoluminescence measurements reveal that crystal quality and optical properties crucially depend on the morphology of the nanostructures. An intense room-temperature photoluminescence (RTPL) signal at 525 nm indicates that the Cu2O nanocolumn arrays exhibit strong green luminescence. The morphology-dependent band gap tuning makes this approach of great potential for nanoscale optoelectronic applications.
dc.language en
dc.publisher American Chemical Society
dc.relation.isreferencedby SCI
dc.rights Copyright [2016]. All efforts have been made to respect the copyright to the best of our knowledge. Inadvertent omissions, if brought to our notice, stand for correction and withdrawal of document from this repository.
dc.subject Chemical Sciences
dc.subject Engineering
dc.subject Materials Sciences
dc.title Band Gap Tuning and Room-Temperature Photoluminescence of a Physically Self-Assembled Cu2O Nanocolumn Array
dc.type Journal Article
dc.affiliation.author CSIR-IMMT, Bhubaneswar 751013, Odisha, India


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