Cargando…

[Cu(18)H(3)(S-Adm)(12)(PPh(3))(4)Cl(2)]: fusion of Platonic and Johnson solids through a Cu(0) center and its photophysical properties

Structural elucidation of atom-precise thiolate-protected copper nanoclusters (Cu NCs) containing Cu(0) is quite challenging. Here, we report a new adamantane-thiol-protected NC, [Cu(18)H(3)(S-Adm)(12)(PPh(3))(4)Cl(2)] (Cu(18)), which represents the first observation of a rare mononuclear Cu(0)-cont...

Descripción completa

Detalles Bibliográficos
Autores principales: Das, Anish Kumar, Biswas, Sourav, Wani, Vaibhav S., Nair, Akhil S., Pathak, Biswarup, Mandal, Sukhendu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9241973/
https://www.ncbi.nlm.nih.gov/pubmed/35872832
http://dx.doi.org/10.1039/d2sc02544b
_version_ 1784737947676835840
author Das, Anish Kumar
Biswas, Sourav
Wani, Vaibhav S.
Nair, Akhil S.
Pathak, Biswarup
Mandal, Sukhendu
author_facet Das, Anish Kumar
Biswas, Sourav
Wani, Vaibhav S.
Nair, Akhil S.
Pathak, Biswarup
Mandal, Sukhendu
author_sort Das, Anish Kumar
collection PubMed
description Structural elucidation of atom-precise thiolate-protected copper nanoclusters (Cu NCs) containing Cu(0) is quite challenging. Here, we report a new adamantane-thiol-protected NC, [Cu(18)H(3)(S-Adm)(12)(PPh(3))(4)Cl(2)] (Cu(18)), which represents the first observation of a rare mononuclear Cu(0)-containing Cu(10)H(3)Cl(2) core that is constructed via kernel fusion through vertex sharing of the Platonic-solid- and Johnson-solid-geometry-like kernels and hydride-bridging. The unique core is surrounded by a Cu(8)S(12)P(4) metal–ligand motif shell and adopts a butterfly-like structure. In comparison to its closest structural analogue, the predominant effect of the principal Cu atom vacancy-induced structural rearrangement is evidenced. The occupied orbitals of this NC have a major d-orbital contribution to the distorted Cu(6) octahedral kernel, whereas unoccupied orbitals owe a contribution to the distorted Cu(5) square-pyramidal kernel. Thus, the charge transfer phenomenon is uniquely instigated between the two fused kernels through Cu(d) → Cu(d) transition via the Cu(0) center. This NC exhibits violet emission due to kernel-dominated relaxation at room temperature, which is further enhanced by confining the surface protecting ligands through recognition-site-specific host–guest supramolecular adduct formation by β-cyclodextrin. The unique electronic structure of this NC further facilitates its application toward photocurrent generation. Thus, this study offers a unique strategy for the controllable synthesis of a Cu(0)-containing Cu NC, which enables atomic-level insights into their optoelectronic properties.
format Online
Article
Text
id pubmed-9241973
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-92419732022-07-22 [Cu(18)H(3)(S-Adm)(12)(PPh(3))(4)Cl(2)]: fusion of Platonic and Johnson solids through a Cu(0) center and its photophysical properties Das, Anish Kumar Biswas, Sourav Wani, Vaibhav S. Nair, Akhil S. Pathak, Biswarup Mandal, Sukhendu Chem Sci Chemistry Structural elucidation of atom-precise thiolate-protected copper nanoclusters (Cu NCs) containing Cu(0) is quite challenging. Here, we report a new adamantane-thiol-protected NC, [Cu(18)H(3)(S-Adm)(12)(PPh(3))(4)Cl(2)] (Cu(18)), which represents the first observation of a rare mononuclear Cu(0)-containing Cu(10)H(3)Cl(2) core that is constructed via kernel fusion through vertex sharing of the Platonic-solid- and Johnson-solid-geometry-like kernels and hydride-bridging. The unique core is surrounded by a Cu(8)S(12)P(4) metal–ligand motif shell and adopts a butterfly-like structure. In comparison to its closest structural analogue, the predominant effect of the principal Cu atom vacancy-induced structural rearrangement is evidenced. The occupied orbitals of this NC have a major d-orbital contribution to the distorted Cu(6) octahedral kernel, whereas unoccupied orbitals owe a contribution to the distorted Cu(5) square-pyramidal kernel. Thus, the charge transfer phenomenon is uniquely instigated between the two fused kernels through Cu(d) → Cu(d) transition via the Cu(0) center. This NC exhibits violet emission due to kernel-dominated relaxation at room temperature, which is further enhanced by confining the surface protecting ligands through recognition-site-specific host–guest supramolecular adduct formation by β-cyclodextrin. The unique electronic structure of this NC further facilitates its application toward photocurrent generation. Thus, this study offers a unique strategy for the controllable synthesis of a Cu(0)-containing Cu NC, which enables atomic-level insights into their optoelectronic properties. The Royal Society of Chemistry 2022-06-02 /pmc/articles/PMC9241973/ /pubmed/35872832 http://dx.doi.org/10.1039/d2sc02544b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Das, Anish Kumar
Biswas, Sourav
Wani, Vaibhav S.
Nair, Akhil S.
Pathak, Biswarup
Mandal, Sukhendu
[Cu(18)H(3)(S-Adm)(12)(PPh(3))(4)Cl(2)]: fusion of Platonic and Johnson solids through a Cu(0) center and its photophysical properties
title [Cu(18)H(3)(S-Adm)(12)(PPh(3))(4)Cl(2)]: fusion of Platonic and Johnson solids through a Cu(0) center and its photophysical properties
title_full [Cu(18)H(3)(S-Adm)(12)(PPh(3))(4)Cl(2)]: fusion of Platonic and Johnson solids through a Cu(0) center and its photophysical properties
title_fullStr [Cu(18)H(3)(S-Adm)(12)(PPh(3))(4)Cl(2)]: fusion of Platonic and Johnson solids through a Cu(0) center and its photophysical properties
title_full_unstemmed [Cu(18)H(3)(S-Adm)(12)(PPh(3))(4)Cl(2)]: fusion of Platonic and Johnson solids through a Cu(0) center and its photophysical properties
title_short [Cu(18)H(3)(S-Adm)(12)(PPh(3))(4)Cl(2)]: fusion of Platonic and Johnson solids through a Cu(0) center and its photophysical properties
title_sort [cu(18)h(3)(s-adm)(12)(pph(3))(4)cl(2)]: fusion of platonic and johnson solids through a cu(0) center and its photophysical properties
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9241973/
https://www.ncbi.nlm.nih.gov/pubmed/35872832
http://dx.doi.org/10.1039/d2sc02544b
work_keys_str_mv AT dasanishkumar cu18h3sadm12pph34cl2fusionofplatonicandjohnsonsolidsthroughacu0centeranditsphotophysicalproperties
AT biswassourav cu18h3sadm12pph34cl2fusionofplatonicandjohnsonsolidsthroughacu0centeranditsphotophysicalproperties
AT wanivaibhavs cu18h3sadm12pph34cl2fusionofplatonicandjohnsonsolidsthroughacu0centeranditsphotophysicalproperties
AT nairakhils cu18h3sadm12pph34cl2fusionofplatonicandjohnsonsolidsthroughacu0centeranditsphotophysicalproperties
AT pathakbiswarup cu18h3sadm12pph34cl2fusionofplatonicandjohnsonsolidsthroughacu0centeranditsphotophysicalproperties
AT mandalsukhendu cu18h3sadm12pph34cl2fusionofplatonicandjohnsonsolidsthroughacu0centeranditsphotophysicalproperties