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首页> 外文期刊>Organometallics >Synthesis and Characterization of Molybdenum(0) and Tungsten(0) Complexes of Tetramethylthiourea:Single-Source Precursors for MoS2 and WS2
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Synthesis and Characterization of Molybdenum(0) and Tungsten(0) Complexes of Tetramethylthiourea:Single-Source Precursors for MoS2 and WS2

机译:四甲基硫脲的钼(0)和钨(0)配合物的合成和表征:MoS2和WS2的单源前体

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摘要

The molybdenum(0) and tungsten(0) carbonyl complexes, [M(CO)_n(TMTU)_(6-n)] (M = Mo and W; TMTU = tetramethylthiourea; n = 4 and 5), have been prepared by addition of TMTU to the appropriate carbonyl precursors. In the solid state, the compounds are monomeric and feature octahedral coordination geometries about the metal. In the case of [M(CO)_4(TMTU)_2], the TMTU ligands are bound in a cis fashion. Dissolution of cis-[M(CO)_4(TMTU)_2] produces an equilibrium mixture of cis-[M(CO)_4(TMTU)_2], free TMTU, and the putative dimeric species, cis,cis-[M_2(CO)_8- (μ-TMTU)_2]. Attempts to prepare the tricarbonyl complex, [Mo(CO)_3(TMTU)_3], by addition of TMTU to fac-[Mo- (CO)_3(η~6-cycloheptatriene)] results in isolation of cis-[Mo- (CO)_4(TMTU)_2], demonstrating that exchange of CO and TMTU ligands is facile in these compounds. Each of the compounds decomposes readily in the solid state above 110 °C, ultimately forming the tetravalent metal disulfide. Thermolysis reactions of [M(CO)_n(TMTU)_(6-n)] complexes at 300 °C under an argon atmosphere produces amorphous MS_2, establishing the utility of these compounds as precursors to molybdenum and tungsten disulfide materials under relatively mild conditions.
机译:制备了钼(0)和钨(0)羰基配合物[M(CO)_n(TMTU)_(6-n)](M = Mo和W; TMTU =四甲基硫脲; n = 4和5)通过将TMTU加入适当的羰基前体中。在固态状态下,化合物为单体,并具有围绕金属的八面体配位几何形状。在[M(CO)_4(TMTU)_2]的情况下,TMTU配体以顺式方式结合。溶解顺式[[M(CO)_4(TMTU)_2]产生了顺式[[M(CO)_4(TMTU)_2],游离TMTU和假定的二聚体顺式,顺式[M_2( CO)_8-(μ-TMTU)_2]。尝试通过将TMTU添加到fac- [Mo-(CO)_3(η〜6-环庚三烯)]中来制备三羰基配合物[Mo(CO)_3(TMTU)_3]导致分离出顺式[Mo- (CO)_4(TMTU)_2],表明这些化合物中CO和TMTU配体的交换很容易。每种化合物在高于110°C的固态下都容易分解,最终形成四价金属二硫化物。 [M(CO)_n(TMTU)_(6-n)]配合物在氩气气氛下于300°C的热解反应产生非晶态MS_2,确立了这些化合物在相对温和的条件下作为钼和二硫化钨材料的前体的作用。

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