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Synthesis and the crystal and molecular structure of the Sn(IV)–Nd(III) coordination polymer based on the tartaric acid [NdSn 2 {H( Tart ) 3 } · 12H 2 O] n

Synthesis and the crystal and molecular structure of the Sn(IV)–Nd(III) coordination polymer... Abstract The polymeric heterometallic [NdSn2{H(Tart)3} ∙ 12H2O] n (I) compound, where H4 Tart is the tartaric acid, is synthesized and characterized by elemental analysis, X-ray diffraction, thermogravimetry, and IR spectroscopy. The structural elements of crystal I, namely, polymeric [{Nd(H2O)6}(μ3-H n Tart 4–n) {Sn(μ2-H n Tart 4–n)}2} (n = 0, 1) complex molecules and crystallization water molecules, are connected by an extended hydrogen-bond system. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Crystallography Reports Springer Journals

Synthesis and the crystal and molecular structure of the Sn(IV)–Nd(III) coordination polymer based on the tartaric acid [NdSn 2 {H( Tart ) 3 } · 12H 2 O] n

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References (25)

Publisher
Springer Journals
Copyright
2016 Pleiades Publishing, Inc.
ISSN
1063-7745
eISSN
1562-689X
DOI
10.1134/s1063774516020206
Publisher site
See Article on Publisher Site

Abstract

Abstract The polymeric heterometallic [NdSn2{H(Tart)3} ∙ 12H2O] n (I) compound, where H4 Tart is the tartaric acid, is synthesized and characterized by elemental analysis, X-ray diffraction, thermogravimetry, and IR spectroscopy. The structural elements of crystal I, namely, polymeric [{Nd(H2O)6}(μ3-H n Tart 4–n) {Sn(μ2-H n Tart 4–n)}2} (n = 0, 1) complex molecules and crystallization water molecules, are connected by an extended hydrogen-bond system.

Journal

Crystallography ReportsSpringer Journals

Published: Mar 1, 2016

Keywords: Crystallography and Scattering Methods

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