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Thermodynamically controlled products: novel motif of metallohelicates stabilized by inter- and intra-helix hydrogen bonds

机译:热力学控制的产品:通过螺旋间和螺旋内氢键稳定的金属螺旋化合物的新基序

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Two temperature and/or time dependent self-assembly processes of maleic dianion (male), thiourea and zinc(II) or cadmium(II) ions have been studied. By prolonging the reaction time and heating, the kinetic product [{Zn(male)(tu)(H2O)}(2)]. 4H(2)O 1 can be converted into the thermodynamic product [{Zn(male)(tu)(2)}(n)] 2. In the case of the Cd-maleate-tu system, the thermodynamic product with helical formation [{(male)Cd(tu)(2)}(2)(male)Cd(tu)(H2O)(2)](n) 4 was obtained from the kinetically controlled product [Cd(Hmale)(2)(tu)(2)(H2O)(2)] 3 by prolonging the reaction time. The thermodynamic helicate 2 bears a new metallohelicate motif in which the helical structure is induced and stabilized by interhelix hydrogen bonding. On the contrary, 4 also bears an infinite metallohelicate motif where the helix is induced and stabilized by intrahelix hydrogen bonding and a 3-D network is formed through hydrogen bonds and short S ... S contacts among neighboring helixes. All the complexes were characterized by X-ray crystallography. [References: 41]
机译:研究了两种温度和/或时间相关的马来二价阴离子(雄性),硫脲和锌(II)或镉(II)离子的自组装过程。通过延长反应时间和加热,可以得到动力学产物[{Zn(male)(tu)(H2O)}(2)。可以将4H(2)O 1转换为热力学乘积[{Zn(male)(tu)(2)}(n)]2。在Cd-马来酸酯-tu体系的情况下,具有螺旋形式的热力学乘积[{(male)Cd(tu)(2)}(2)(male)Cd(tu)(H2O)(2)](n)4是从动力学控制产物[Cd(Hmale)(2)( tu)(2)(H2O)(2)] 3延长反应时间。热力学螺旋线2带有新的金属螺旋线基序,其中通过螺旋间氢键诱导并稳定了螺旋结构。相反,4还带有无限的金属螺旋基序,其中螺旋是通过螺旋内的氢键诱导和稳定的,并且通过氢键和相邻螺旋之间的短S ... S接触形成了3-D网络。所有配合物均通过X射线晶体学表征。 [参考:41]

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