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[Ag(115)S(34)(SCH(2)C(6)H(4) (t)Bu)(47)(dpph)(6)]: synthesis, crystal structure and NMR investigations of a soluble silver chalcogenide nanocluster

With the aim to synthesize soluble cluster molecules, the silver salt of (4-(tert-butyl)phenyl)methanethiol [AgSCH(2)C(6)H(4) (t)Bu] was applied as a suitable precursor for the formation of a nanoscale silver sulfide cluster. In the presence of 1,6-(diphenylphosphino)hexane (dpph), the 115 nuclear s...

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Autores principales: Bestgen, Sebastian, Fuhr, Olaf, Breitung, Ben, Kiran Chakravadhanula, Venkata Sei, Guthausen, Gisela, Hennrich, Frank, Yu, Wen, Kappes, Manfred M., Roesky, Peter W., Fenske, Dieter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5408567/
https://www.ncbi.nlm.nih.gov/pubmed/28507679
http://dx.doi.org/10.1039/c6sc04578b
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author Bestgen, Sebastian
Fuhr, Olaf
Breitung, Ben
Kiran Chakravadhanula, Venkata Sei
Guthausen, Gisela
Hennrich, Frank
Yu, Wen
Kappes, Manfred M.
Roesky, Peter W.
Fenske, Dieter
author_facet Bestgen, Sebastian
Fuhr, Olaf
Breitung, Ben
Kiran Chakravadhanula, Venkata Sei
Guthausen, Gisela
Hennrich, Frank
Yu, Wen
Kappes, Manfred M.
Roesky, Peter W.
Fenske, Dieter
author_sort Bestgen, Sebastian
collection PubMed
description With the aim to synthesize soluble cluster molecules, the silver salt of (4-(tert-butyl)phenyl)methanethiol [AgSCH(2)C(6)H(4) (t)Bu] was applied as a suitable precursor for the formation of a nanoscale silver sulfide cluster. In the presence of 1,6-(diphenylphosphino)hexane (dpph), the 115 nuclear silver cluster [Ag(115)S(34)(SCH(2)C(6)H(4) (t)Bu)(47)(dpph)(6)] was obtained. The molecular structure of this compound was elucidated by single crystal X-ray analysis and fully characterized by spectroscopic techniques. In contrast to most of the previously published cluster compounds with more than a hundred heavy atoms, this nanoscale inorganic molecule is soluble in organic solvents, which allowed a comprehensive investigation in solution by UV-Vis spectroscopy and one- and two-dimensional NMR spectroscopy including (31)P/(109)Ag-HSQC and DOSY experiments. These are the first heteronuclear NMR investigations on coinage metal chalcogenides. They give some first insight into the behavior of nanoscale silver sulfide clusters in solution. Additionally, molecular weight determinations were performed by 2D analytical ultracentrifugation and HR-TEM investigations confirm the presence of size-homogeneous nanoparticles present in solution.
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spelling pubmed-54085672017-05-15 [Ag(115)S(34)(SCH(2)C(6)H(4) (t)Bu)(47)(dpph)(6)]: synthesis, crystal structure and NMR investigations of a soluble silver chalcogenide nanocluster Bestgen, Sebastian Fuhr, Olaf Breitung, Ben Kiran Chakravadhanula, Venkata Sei Guthausen, Gisela Hennrich, Frank Yu, Wen Kappes, Manfred M. Roesky, Peter W. Fenske, Dieter Chem Sci Chemistry With the aim to synthesize soluble cluster molecules, the silver salt of (4-(tert-butyl)phenyl)methanethiol [AgSCH(2)C(6)H(4) (t)Bu] was applied as a suitable precursor for the formation of a nanoscale silver sulfide cluster. In the presence of 1,6-(diphenylphosphino)hexane (dpph), the 115 nuclear silver cluster [Ag(115)S(34)(SCH(2)C(6)H(4) (t)Bu)(47)(dpph)(6)] was obtained. The molecular structure of this compound was elucidated by single crystal X-ray analysis and fully characterized by spectroscopic techniques. In contrast to most of the previously published cluster compounds with more than a hundred heavy atoms, this nanoscale inorganic molecule is soluble in organic solvents, which allowed a comprehensive investigation in solution by UV-Vis spectroscopy and one- and two-dimensional NMR spectroscopy including (31)P/(109)Ag-HSQC and DOSY experiments. These are the first heteronuclear NMR investigations on coinage metal chalcogenides. They give some first insight into the behavior of nanoscale silver sulfide clusters in solution. Additionally, molecular weight determinations were performed by 2D analytical ultracentrifugation and HR-TEM investigations confirm the presence of size-homogeneous nanoparticles present in solution. Royal Society of Chemistry 2017-03-01 2016-12-15 /pmc/articles/PMC5408567/ /pubmed/28507679 http://dx.doi.org/10.1039/c6sc04578b Text en This journal is © The Royal Society of Chemistry 2016 http://creativecommons.org/licenses/by/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution 3.0 Unported License (http://creativecommons.org/licenses/by/3.0/) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Chemistry
Bestgen, Sebastian
Fuhr, Olaf
Breitung, Ben
Kiran Chakravadhanula, Venkata Sei
Guthausen, Gisela
Hennrich, Frank
Yu, Wen
Kappes, Manfred M.
Roesky, Peter W.
Fenske, Dieter
[Ag(115)S(34)(SCH(2)C(6)H(4) (t)Bu)(47)(dpph)(6)]: synthesis, crystal structure and NMR investigations of a soluble silver chalcogenide nanocluster
title [Ag(115)S(34)(SCH(2)C(6)H(4) (t)Bu)(47)(dpph)(6)]: synthesis, crystal structure and NMR investigations of a soluble silver chalcogenide nanocluster
title_full [Ag(115)S(34)(SCH(2)C(6)H(4) (t)Bu)(47)(dpph)(6)]: synthesis, crystal structure and NMR investigations of a soluble silver chalcogenide nanocluster
title_fullStr [Ag(115)S(34)(SCH(2)C(6)H(4) (t)Bu)(47)(dpph)(6)]: synthesis, crystal structure and NMR investigations of a soluble silver chalcogenide nanocluster
title_full_unstemmed [Ag(115)S(34)(SCH(2)C(6)H(4) (t)Bu)(47)(dpph)(6)]: synthesis, crystal structure and NMR investigations of a soluble silver chalcogenide nanocluster
title_short [Ag(115)S(34)(SCH(2)C(6)H(4) (t)Bu)(47)(dpph)(6)]: synthesis, crystal structure and NMR investigations of a soluble silver chalcogenide nanocluster
title_sort [ag(115)s(34)(sch(2)c(6)h(4) (t)bu)(47)(dpph)(6)]: synthesis, crystal structure and nmr investigations of a soluble silver chalcogenide nanocluster
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5408567/
https://www.ncbi.nlm.nih.gov/pubmed/28507679
http://dx.doi.org/10.1039/c6sc04578b
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