A versatile salt-metathesis route to heteroatomic clusters derived from phosphorus and arsenic Zintl anions.

Salt metathesis reactions between ethylenediamine (en) solutions of the K(3)E(7) (E = P, As) Zintl phases and post-transition metal halides (InCl(3), TlCl, SnI(2) and PbI(2)) have yielded a family of novel heteroatomic cluster anions, [In(E(7))(2)](3-), [TlE(7)](2-) and [E'E(15)](3-) (E' =...

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Main Authors: Knapp, C, Large, J, Rees, N, Goicoechea, J
Format: Journal article
Language:English
Published: 2011
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author Knapp, C
Large, J
Rees, N
Goicoechea, J
author_facet Knapp, C
Large, J
Rees, N
Goicoechea, J
author_sort Knapp, C
collection OXFORD
description Salt metathesis reactions between ethylenediamine (en) solutions of the K(3)E(7) (E = P, As) Zintl phases and post-transition metal halides (InCl(3), TlCl, SnI(2) and PbI(2)) have yielded a family of novel heteroatomic cluster anions, [In(E(7))(2)](3-), [TlE(7)](2-) and [E'E(15)](3-) (E' = Sn, Pb; E = P, As). Several of these new species have been characterized by single-crystal X-ray diffraction as salts of sequestered potassium cations in [K(2,2,2-crypt)](3)[In(P(7))(2)]·3.5py (1), [K(2,2,2-crypt)](2)[TlP(7)]·py (3), [K(18-crown-6)](2)[TlAs(7)] (4b), [K(2,2,2-crypt)](3)[E'P(15)]·en (E' = Sn (5), Pb (6)) and [K(2,2,2-crypt)](3)[SnAs(15)]·2en (7). The presence of all of the cluster anions in solution was confirmed by electrospray mass-spectrometry and by (1)H and (31)P{(1)H} NMR spectroscopy when pertinent.
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spelling oxford-uuid:0490c511-122b-42fd-91e8-df62c407a5202022-03-26T08:52:31ZA versatile salt-metathesis route to heteroatomic clusters derived from phosphorus and arsenic Zintl anions.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:0490c511-122b-42fd-91e8-df62c407a520EnglishSymplectic Elements at Oxford2011Knapp, CLarge, JRees, NGoicoechea, JSalt metathesis reactions between ethylenediamine (en) solutions of the K(3)E(7) (E = P, As) Zintl phases and post-transition metal halides (InCl(3), TlCl, SnI(2) and PbI(2)) have yielded a family of novel heteroatomic cluster anions, [In(E(7))(2)](3-), [TlE(7)](2-) and [E'E(15)](3-) (E' = Sn, Pb; E = P, As). Several of these new species have been characterized by single-crystal X-ray diffraction as salts of sequestered potassium cations in [K(2,2,2-crypt)](3)[In(P(7))(2)]·3.5py (1), [K(2,2,2-crypt)](2)[TlP(7)]·py (3), [K(18-crown-6)](2)[TlAs(7)] (4b), [K(2,2,2-crypt)](3)[E'P(15)]·en (E' = Sn (5), Pb (6)) and [K(2,2,2-crypt)](3)[SnAs(15)]·2en (7). The presence of all of the cluster anions in solution was confirmed by electrospray mass-spectrometry and by (1)H and (31)P{(1)H} NMR spectroscopy when pertinent.
spellingShingle Knapp, C
Large, J
Rees, N
Goicoechea, J
A versatile salt-metathesis route to heteroatomic clusters derived from phosphorus and arsenic Zintl anions.
title A versatile salt-metathesis route to heteroatomic clusters derived from phosphorus and arsenic Zintl anions.
title_full A versatile salt-metathesis route to heteroatomic clusters derived from phosphorus and arsenic Zintl anions.
title_fullStr A versatile salt-metathesis route to heteroatomic clusters derived from phosphorus and arsenic Zintl anions.
title_full_unstemmed A versatile salt-metathesis route to heteroatomic clusters derived from phosphorus and arsenic Zintl anions.
title_short A versatile salt-metathesis route to heteroatomic clusters derived from phosphorus and arsenic Zintl anions.
title_sort versatile salt metathesis route to heteroatomic clusters derived from phosphorus and arsenic zintl anions
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