Quantifying magnetic exchange in doubly-bridged Cu-X(2)-Cu (X = F, Cl, Br) chains enabled by solid state synthesis of CuF(2)(pyrazine).

Quantifying magnetic exchange in doubly-bridged Cu-X(2)-Cu (X = F, Cl, Br) chains enabled by solid state synthesis of CuF(2)(pyrazine).
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DOI:
10.1039/c3cc41394b
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发表时间:
2013-04
影响因子:
4.9
通讯作者:
S. Lapidus;J. Manson;Junjie Liu;Matthew J S Smith;P. Goddard;J. Bendix;C. Topping;J. Singleton;C. Dunmars;J. Mitchell;J. Schlueter
S. Lapidus;J. Manson;Junjie Liu;Matthew J S Smith;P. Goddard;J. Bendix;C. Topping;J. Singleton;C. Dunmars;J. Mitchell;J. Schlueter
中科院分区:
化学2区
文献类型:
--
作者:
S. Lapidus;J. Manson;Junjie Liu;Matthew J S Smith;P. Goddard;J. Bendix;C. Topping;J. Singleton;C. Dunmars;J. Mitchell;J. Schlueter

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固相合成技术涉及压力和温度已经被用来合成CuX(2)(吡嗪)(X = F,Cl,Br)家族的配位聚合物的氟化物成员,该配位聚合物不能通过溶液方法结晶。CuF(2)(吡嗪)具有独特的反式双桥Cu-F(2)-Cu链,这为定量Cu-X(2)-Cu系列中的磁超交换提供了机会。
Solid state techniques involving pressure and temperature have been used to synthesize the fluoride member of the CuX(2)(pyrazine) (X = F, Cl, Br) family of coordination polymers that cannot be crystallized by solution methods. CuF(2)(pyrazine) exhibits unique trans doubly-bridged Cu-F(2)-Cu chains that provide an opportunity to quantify magnetic superexchange in an isostructural Cu-X(2)-Cu series.