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Synthesis and structure of [(Ph(3)P)(2)Cu(μ-SeCH(2)Ph)(2)In(SeCH(2)Ph)(2)] as a single-source precursor for the preparation of CuInSe(2) nano-materials

The reaction of freshly prepared Na[In(SeCH(2)C(6)H(5))(4)] with the mixture of CuCl and triphenylphosphine in methanol yielded [(PPh(3))(2)CuIn(SeCH(2)C(6)H(5))(4)]. The X-ray structure of the complex revealed the monomeric form of [(Ph(3)P)(2)Cu(μ-SeCH(2)Ph)(2)In(SeCH(2)Ph)(2)] consisting of tetra...

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Detalles Bibliográficos
Autores principales: Pal, Manoj K., Dey, Sandip, Neogy, Suman, Kumar, Mukesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064769/
https://www.ncbi.nlm.nih.gov/pubmed/35515225
http://dx.doi.org/10.1039/c9ra03429c
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author Pal, Manoj K.
Dey, Sandip
Neogy, Suman
Kumar, Mukesh
author_facet Pal, Manoj K.
Dey, Sandip
Neogy, Suman
Kumar, Mukesh
author_sort Pal, Manoj K.
collection PubMed
description The reaction of freshly prepared Na[In(SeCH(2)C(6)H(5))(4)] with the mixture of CuCl and triphenylphosphine in methanol yielded [(PPh(3))(2)CuIn(SeCH(2)C(6)H(5))(4)]. The X-ray structure of the complex revealed the monomeric form of [(Ph(3)P)(2)Cu(μ-SeCH(2)Ph)(2)In(SeCH(2)Ph)(2)] consisting of tetrahedral Cu(i) and In(iii) centers, bridged by two benzyl selenolate ligands. The complex on pyrolysis in a furnace or in oleylamine/HDA yielded tetragonal CuInSe(2). The morphology and composition of nanostructures were investigated by pXRD, SEM, TEM and EDX analysis. The band gap of the CuInSe(2) nanostructures, obtained from pyrolysis in HDA and OA has been deduced from DRS as 1.85 and 1.86 eV, respectively.
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spelling pubmed-90647692022-05-04 Synthesis and structure of [(Ph(3)P)(2)Cu(μ-SeCH(2)Ph)(2)In(SeCH(2)Ph)(2)] as a single-source precursor for the preparation of CuInSe(2) nano-materials Pal, Manoj K. Dey, Sandip Neogy, Suman Kumar, Mukesh RSC Adv Chemistry The reaction of freshly prepared Na[In(SeCH(2)C(6)H(5))(4)] with the mixture of CuCl and triphenylphosphine in methanol yielded [(PPh(3))(2)CuIn(SeCH(2)C(6)H(5))(4)]. The X-ray structure of the complex revealed the monomeric form of [(Ph(3)P)(2)Cu(μ-SeCH(2)Ph)(2)In(SeCH(2)Ph)(2)] consisting of tetrahedral Cu(i) and In(iii) centers, bridged by two benzyl selenolate ligands. The complex on pyrolysis in a furnace or in oleylamine/HDA yielded tetragonal CuInSe(2). The morphology and composition of nanostructures were investigated by pXRD, SEM, TEM and EDX analysis. The band gap of the CuInSe(2) nanostructures, obtained from pyrolysis in HDA and OA has been deduced from DRS as 1.85 and 1.86 eV, respectively. The Royal Society of Chemistry 2019-06-11 /pmc/articles/PMC9064769/ /pubmed/35515225 http://dx.doi.org/10.1039/c9ra03429c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Pal, Manoj K.
Dey, Sandip
Neogy, Suman
Kumar, Mukesh
Synthesis and structure of [(Ph(3)P)(2)Cu(μ-SeCH(2)Ph)(2)In(SeCH(2)Ph)(2)] as a single-source precursor for the preparation of CuInSe(2) nano-materials
title Synthesis and structure of [(Ph(3)P)(2)Cu(μ-SeCH(2)Ph)(2)In(SeCH(2)Ph)(2)] as a single-source precursor for the preparation of CuInSe(2) nano-materials
title_full Synthesis and structure of [(Ph(3)P)(2)Cu(μ-SeCH(2)Ph)(2)In(SeCH(2)Ph)(2)] as a single-source precursor for the preparation of CuInSe(2) nano-materials
title_fullStr Synthesis and structure of [(Ph(3)P)(2)Cu(μ-SeCH(2)Ph)(2)In(SeCH(2)Ph)(2)] as a single-source precursor for the preparation of CuInSe(2) nano-materials
title_full_unstemmed Synthesis and structure of [(Ph(3)P)(2)Cu(μ-SeCH(2)Ph)(2)In(SeCH(2)Ph)(2)] as a single-source precursor for the preparation of CuInSe(2) nano-materials
title_short Synthesis and structure of [(Ph(3)P)(2)Cu(μ-SeCH(2)Ph)(2)In(SeCH(2)Ph)(2)] as a single-source precursor for the preparation of CuInSe(2) nano-materials
title_sort synthesis and structure of [(ph(3)p)(2)cu(μ-sech(2)ph)(2)in(sech(2)ph)(2)] as a single-source precursor for the preparation of cuinse(2) nano-materials
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064769/
https://www.ncbi.nlm.nih.gov/pubmed/35515225
http://dx.doi.org/10.1039/c9ra03429c
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