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Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09): a new acentric metal borosilicate as a promising nonlinear optical material

A new acentric metal borosilicate, namely Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09), has been synthesized by a standard solid-state reaction. The title compound crystallizes in noncentrosymmetric (NCS) space group I4[combining macron]2m with lattice parameters a = 11.0254(4) Å and c = 10.3961(9) Å....

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Autores principales: Tang, Ru-Ling, Hu, Chun-Li, Mao, Fei-Fei, Feng, Jiang-He, Mao, Jiang-Gao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6345346/
https://www.ncbi.nlm.nih.gov/pubmed/30774878
http://dx.doi.org/10.1039/c8sc04342f
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author Tang, Ru-Ling
Hu, Chun-Li
Mao, Fei-Fei
Feng, Jiang-He
Mao, Jiang-Gao
author_facet Tang, Ru-Ling
Hu, Chun-Li
Mao, Fei-Fei
Feng, Jiang-He
Mao, Jiang-Gao
author_sort Tang, Ru-Ling
collection PubMed
description A new acentric metal borosilicate, namely Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09), has been synthesized by a standard solid-state reaction. The title compound crystallizes in noncentrosymmetric (NCS) space group I4[combining macron]2m with lattice parameters a = 11.0254(4) Å and c = 10.3961(9) Å. Structure refinements indicate that mixing of B atoms and Si atoms exists for a few atomic sites. In the “ideal” Ba(4)Bi(2)(Si(8)B(4)O(29)), BO(4) or SiO(4) tetrahedra are inter-connected by corner-sharing to cyclic B(4)O(12) or Si(4)O(12) units. These B(4)O(12) and Si(4)O(12) units are further interconnected via corner-sharing to an “ideal” [Si(8)B(4)O(29)](14–) 3D network. The Ba(2+) and Bi(3+) act as the counter cations and are located at the cavities of the structure. Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09) melts incongruently at a high temperature of 929 °C. Powder second-harmonic generation (SHG) measurements reveal that Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09) is a type I phase-matching compound with a good SHG response of about 5.1 times that of KDP (KH(2)PO(4)), which is the highest among the borosilicates reported so far. The SHG source has been studied by DFT theoretical calculations. Our preliminary results indicate that Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09) is a new second-order nonlinear-optical crystalline material candidate.
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spelling pubmed-63453462019-02-15 Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09): a new acentric metal borosilicate as a promising nonlinear optical material Tang, Ru-Ling Hu, Chun-Li Mao, Fei-Fei Feng, Jiang-He Mao, Jiang-Gao Chem Sci Chemistry A new acentric metal borosilicate, namely Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09), has been synthesized by a standard solid-state reaction. The title compound crystallizes in noncentrosymmetric (NCS) space group I4[combining macron]2m with lattice parameters a = 11.0254(4) Å and c = 10.3961(9) Å. Structure refinements indicate that mixing of B atoms and Si atoms exists for a few atomic sites. In the “ideal” Ba(4)Bi(2)(Si(8)B(4)O(29)), BO(4) or SiO(4) tetrahedra are inter-connected by corner-sharing to cyclic B(4)O(12) or Si(4)O(12) units. These B(4)O(12) and Si(4)O(12) units are further interconnected via corner-sharing to an “ideal” [Si(8)B(4)O(29)](14–) 3D network. The Ba(2+) and Bi(3+) act as the counter cations and are located at the cavities of the structure. Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09) melts incongruently at a high temperature of 929 °C. Powder second-harmonic generation (SHG) measurements reveal that Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09) is a type I phase-matching compound with a good SHG response of about 5.1 times that of KDP (KH(2)PO(4)), which is the highest among the borosilicates reported so far. The SHG source has been studied by DFT theoretical calculations. Our preliminary results indicate that Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09) is a new second-order nonlinear-optical crystalline material candidate. Royal Society of Chemistry 2018-10-31 /pmc/articles/PMC6345346/ /pubmed/30774878 http://dx.doi.org/10.1039/c8sc04342f Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by-nc/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution Non Commercial 3.0 Unported Licence (CC BY-NC 3.0)
spellingShingle Chemistry
Tang, Ru-Ling
Hu, Chun-Li
Mao, Fei-Fei
Feng, Jiang-He
Mao, Jiang-Gao
Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09): a new acentric metal borosilicate as a promising nonlinear optical material
title Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09): a new acentric metal borosilicate as a promising nonlinear optical material
title_full Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09): a new acentric metal borosilicate as a promising nonlinear optical material
title_fullStr Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09): a new acentric metal borosilicate as a promising nonlinear optical material
title_full_unstemmed Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09): a new acentric metal borosilicate as a promising nonlinear optical material
title_short Ba(4)Bi(2)(Si(8–x)B(4+x)O(29)) (x = 0.09): a new acentric metal borosilicate as a promising nonlinear optical material
title_sort ba(4)bi(2)(si(8–x)b(4+x)o(29)) (x = 0.09): a new acentric metal borosilicate as a promising nonlinear optical material
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6345346/
https://www.ncbi.nlm.nih.gov/pubmed/30774878
http://dx.doi.org/10.1039/c8sc04342f
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