“114”‐Type Nitrides LnAl(Si4−xAlx)N7Oδ with Unusual [AlN6] Octahedral Coordination

Aluminum–nitrogen six‐fold octahedral coordination, [AlN6], is unusual and has only been seen in the high‐pressure rocksalt‐type aluminum nitride or some complex compounds. Herein we report novel nitrides LnAl(Si4−xAlx)N7Oδ (Ln=La, Sm), the first inorganic compounds with [AlN6] coordination prepared...

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Veröffentlicht in:Angewandte Chemie 2017-03, Vol.129 (14), p.3944-3949
Hauptverfasser: Huang, Saifang, Huang, Zhaohui, Cao, Peng, Zujovic, Zoran, Price, Jason R., Avdeev, Maxim, Que, Meidan, Suzuki, Furitsu, Kido, Tsuyoshi, Ouyang, Xin, Kaji, Hironori, Fang, Minghao, Liu, Yan‐gai, Gao, Wei, Söhnel, Tilo
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container_issue 14
container_start_page 3944
container_title Angewandte Chemie
container_volume 129
creator Huang, Saifang
Huang, Zhaohui
Cao, Peng
Zujovic, Zoran
Price, Jason R.
Avdeev, Maxim
Que, Meidan
Suzuki, Furitsu
Kido, Tsuyoshi
Ouyang, Xin
Kaji, Hironori
Fang, Minghao
Liu, Yan‐gai
Gao, Wei
Söhnel, Tilo
description Aluminum–nitrogen six‐fold octahedral coordination, [AlN6], is unusual and has only been seen in the high‐pressure rocksalt‐type aluminum nitride or some complex compounds. Herein we report novel nitrides LnAl(Si4−xAlx)N7Oδ (Ln=La, Sm), the first inorganic compounds with [AlN6] coordination prepared via non‐high‐pressure synthesis. Structure refinements of neutron powder diffraction and single‐crystal X‐ray diffraction data show that these compounds crystallize in the hexagonal Swedenborgite structure type with P63mc symmetry where Ln and Al atoms locate in anticuboctahedral and octahedral interstitials, respectively, between the triangular and Kagomé layers of [SiN4] tetrahedra. Solid‐state NMR data of high‐purity La‐114 powders confirm the unusual [AlN6] coordination. These compounds are the first examples of the “33‐114” sub‐type in the “114” family. The additional site for over‐stoichiometric oxygen in the structure of 114‐type compounds was also identified. 6 × N, 1 × Al: Das unübliche [AlN6]‐Koordinationsmuster findet sich bei der bei Normaldruck hergestellten La‐114‐Verbindung LnAl(Si4−xAlx)N7Oδ (Ln=La, Sm). Eine Kristallstrukturanalyse bestätigt diese Oktaederkoordination, ebenso wie die chemische Verschiebung von δ=3.5 ppm in 27Al‐NMR‐Spektren von La‐114‐Pulvern. Die zusätzlichen Sauerstoffatome umgeben die [AlN6]‐Oktaeder in ungeordneter Weise.
doi_str_mv 10.1002/ange.201612488
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Herein we report novel nitrides LnAl(Si4−xAlx)N7Oδ (Ln=La, Sm), the first inorganic compounds with [AlN6] coordination prepared via non‐high‐pressure synthesis. Structure refinements of neutron powder diffraction and single‐crystal X‐ray diffraction data show that these compounds crystallize in the hexagonal Swedenborgite structure type with P63mc symmetry where Ln and Al atoms locate in anticuboctahedral and octahedral interstitials, respectively, between the triangular and Kagomé layers of [SiN4] tetrahedra. Solid‐state NMR data of high‐purity La‐114 powders confirm the unusual [AlN6] coordination. These compounds are the first examples of the “33‐114” sub‐type in the “114” family. The additional site for over‐stoichiometric oxygen in the structure of 114‐type compounds was also identified. 6 × N, 1 × Al: Das unübliche [AlN6]‐Koordinationsmuster findet sich bei der bei Normaldruck hergestellten La‐114‐Verbindung LnAl(Si4−xAlx)N7Oδ (Ln=La, Sm). Eine Kristallstrukturanalyse bestätigt diese Oktaederkoordination, ebenso wie die chemische Verschiebung von δ=3.5 ppm in 27Al‐NMR‐Spektren von La‐114‐Pulvern. Die zusätzlichen Sauerstoffatome umgeben die [AlN6]‐Oktaeder in ungeordneter Weise.</description><identifier>ISSN: 0044-8249</identifier><identifier>EISSN: 1521-3757</identifier><identifier>DOI: 10.1002/ange.201612488</identifier><language>eng</language><subject>[AlN6]-Oktaeder ; Aluminium ; Nitride ; NMR-Spektroskopie ; Strukturaufklärung</subject><ispartof>Angewandte Chemie, 2017-03, Vol.129 (14), p.3944-3949</ispartof><rights>2017 Wiley‐VCH Verlag GmbH &amp; Co. 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Herein we report novel nitrides LnAl(Si4−xAlx)N7Oδ (Ln=La, Sm), the first inorganic compounds with [AlN6] coordination prepared via non‐high‐pressure synthesis. Structure refinements of neutron powder diffraction and single‐crystal X‐ray diffraction data show that these compounds crystallize in the hexagonal Swedenborgite structure type with P63mc symmetry where Ln and Al atoms locate in anticuboctahedral and octahedral interstitials, respectively, between the triangular and Kagomé layers of [SiN4] tetrahedra. Solid‐state NMR data of high‐purity La‐114 powders confirm the unusual [AlN6] coordination. These compounds are the first examples of the “33‐114” sub‐type in the “114” family. The additional site for over‐stoichiometric oxygen in the structure of 114‐type compounds was also identified. 6 × N, 1 × Al: Das unübliche [AlN6]‐Koordinationsmuster findet sich bei der bei Normaldruck hergestellten La‐114‐Verbindung LnAl(Si4−xAlx)N7Oδ (Ln=La, Sm). Eine Kristallstrukturanalyse bestätigt diese Oktaederkoordination, ebenso wie die chemische Verschiebung von δ=3.5 ppm in 27Al‐NMR‐Spektren von La‐114‐Pulvern. 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Herein we report novel nitrides LnAl(Si4−xAlx)N7Oδ (Ln=La, Sm), the first inorganic compounds with [AlN6] coordination prepared via non‐high‐pressure synthesis. Structure refinements of neutron powder diffraction and single‐crystal X‐ray diffraction data show that these compounds crystallize in the hexagonal Swedenborgite structure type with P63mc symmetry where Ln and Al atoms locate in anticuboctahedral and octahedral interstitials, respectively, between the triangular and Kagomé layers of [SiN4] tetrahedra. Solid‐state NMR data of high‐purity La‐114 powders confirm the unusual [AlN6] coordination. These compounds are the first examples of the “33‐114” sub‐type in the “114” family. The additional site for over‐stoichiometric oxygen in the structure of 114‐type compounds was also identified. 6 × N, 1 × Al: Das unübliche [AlN6]‐Koordinationsmuster findet sich bei der bei Normaldruck hergestellten La‐114‐Verbindung LnAl(Si4−xAlx)N7Oδ (Ln=La, Sm). Eine Kristallstrukturanalyse bestätigt diese Oktaederkoordination, ebenso wie die chemische Verschiebung von δ=3.5 ppm in 27Al‐NMR‐Spektren von La‐114‐Pulvern. Die zusätzlichen Sauerstoffatome umgeben die [AlN6]‐Oktaeder in ungeordneter Weise.</abstract><doi>10.1002/ange.201612488</doi><tpages>6</tpages><orcidid>https://orcid.org/0000-0003-4472-5807</orcidid><orcidid>https://orcid.org/0000-0002-3852-6126</orcidid><orcidid>https://orcid.org/0000-0003-2366-5809</orcidid><orcidid>https://orcid.org/0000-0002-4315-4494</orcidid><orcidid>https://orcid.org/0000-0002-5064-0917</orcidid><orcidid>https://orcid.org/0000-0001-6390-6852</orcidid></addata></record>
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subjects [AlN6]-Oktaeder
Aluminium
Nitride
NMR-Spektroskopie
Strukturaufklärung
title “114”‐Type Nitrides LnAl(Si4−xAlx)N7Oδ with Unusual [AlN6] Octahedral Coordination
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