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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Extending motifs in lithiocuprate chemistry: unexpected structural diversity in thiocyanate complexes
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Extending motifs in lithiocuprate chemistry: unexpected structural diversity in thiocyanate complexes

机译:扩展硫代铜酸盐化学中的基序:硫氰酸盐络合物中意外的结构多样性

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摘要

The new area of lithio(thiocyanato)cuprates has been developed. Using inexpensive, stable and safe CuSCN for their preparation, these complexes revealed Lipshutz-type dimeric motifs with solvent-dependent point group identities; planar, boat-shaped and chair shaped conformers are seen in the solid state. In solution, both Lipshutz-type and Gilman structures are clearly seen. Since the advent in 2007 of directed ortho cupration, effort has gone into understanding the structure-reactivity effects of amide ligand variation in and alkali metal salt abstraction from Lipshutz-type cuprates such as (TMP)(2)Cu(CN)Li-2(THF) 1 (TMP = 2,2,6,6-tetramethylpiperidide). The replacement of CN- with SCN- is investigated presently as a means of improving the safety of lithium cuprates. The synthesis and solid state structural characterization of reference cuprate (TMP)(2)Cu(CN)Li-2(THP) 8 (THP = tetrahydropyran) precedes that of the thiocyanate series (TMP)(2)Cu(SCN)Li-2(L) (L = OEt29, THF 10, THP 11). For each of 9-11, preformed TMPLi was combined with CuSCN (2 : 1) in the presence of sub-stoichiometric Lewis base (0.5 eq. wrt Li). The avoidance of Lewis basic solvents incurs formation of the unsolvated Gilman cuprate (TMP)(2)CuLi 12, whilst multidimensional NMR spectroscopy has evidenced the abstraction of LiSCN from 9-11 in hydrocarbon solution and the in situ formation of Gilman reagents. The synthetic utility of 10 is established in the selective deprotometalation of chloropyridine substrates, including effecting transition metal-free homocoupling in 51-69% yield.
机译:已开发出新的硫代(硫氰酸根)铜盐领域。使用廉价,稳定和安全的CuSCN进行制备,这些复合物显示出Lipshutz型二聚体基序,具有溶剂依赖性的点基身份。在固态状态下可以看到平面,船形和椅子形的构形器。在解决方案中,可以清楚地看到Lipshutz型和Gilman结构。自2007年定向正交杯装法问世以来,人们已经开始努力研究酰胺配体的结构反应活性和从Lipshutz型铜酸盐(如(TMP)(2)Cu(CN)Li-2)提取碱金属盐(THF)1(TMP = 2,2,6,6-四甲基哌啶)。目前正在研究用SCN-代替CN-作为提高锂铜酸盐安全性的一种方法。参考铜酸盐(TMP)(2)Cu(CN)Li-2(THP)8(THP =四氢吡喃)的合成和固态结构表征先于硫氰酸盐系列(TMP)(2)Cu(SCN)Li- 2(L)(L = OEt 29,THF 10,THP 11)。对于9-11中的每一个,在亚化学计量的路易斯碱(0.5eq.wrt Li)的存在下,将预制的TMPLi与CuSCN(2∶1)结合。避免使用Lewis碱性溶剂会导致形成未溶剂化的吉尔曼铜酸盐(TMP)(2)CuLi 12,而多维NMR光谱法已经证明了从9-11的LiSCN在烃溶液中的抽象以及吉尔曼试剂的原位形成。 10的合成用途是建立在氯吡啶底物的选择性去原金属化上,包括以51-69%的收率实现无过渡金属的均偶联。

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