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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Homogeneous and heterogeneous catalytic oxidation of sulfides by H_ 2O_2 over zinc(ii) compounds
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Homogeneous and heterogeneous catalytic oxidation of sulfides by H_ 2O_2 over zinc(ii) compounds

机译:H_ 2O_2在锌(ii)化合物上的硫化物的均相和非均相催化氧化

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It has been recently shown that zinc compounds are effective catalysts for the oxidation of alkyl aryl sulfides to the corresponding sulfoxides in the presence of hydrogen peroxide. In this paper, we have investigated homogeneous and heterogeneous catalytic oxidation of sulfides by H_2O_2 over Zn(NO_3)_2·6H_2O and the metal-organic porous material [Zn_2(bdc)(L-lac)(dmf)]·DMF (where H_ 2bdc = p-benzenedicarboxylic acid, H_2lac = lactic acid), respectively. The experimental data can be explained by the proposed catalytic cycle which includes the activation of H_2O_2via coordination to Zn(ii) ions followed by oxygen transfer step. In homogeneous conditions, the presence of a large amounts of H_2O_2 results in the coordination of two molecules of hydrogen peroxide to Zn(ii), so that sulfone is formed via transfer of two oxygen atoms from Zn(H_ 2O)_4(H_2O_2)_2~ (2+) active species. Contrary to the homogeneous system, the use of [Zn 2(bdc)(L-lac)(dmf)]·DMF as catalyst does not lead to the formation of sulfone in the initial period of reaction. This is consistent with the proposed catalytic cycle of sulfoxidation as each Zn(ii) center in the crystalline framework is able to activate only one H_2O_2 molecule. Our investigations indicate that the sorption and activation of H_ 2O_2 molecules by microporous framework [Zn_ 2(bdc)(L-lac)(dmf)] occur faster than sulfide sorption and oxygen transfer.
机译:最近显示,在过氧化氢存在下,锌化合物是有效的催化剂,用于将烷基芳基硫醚氧化为相应的亚砜。在本文中,我们研究了H_2O_2在Zn(NO_3)_2·6H_2O和金属有机多孔材料[Zn_2(bdc)(L-lac)(dmf)]·DMF(其中H_ 2bdc =对苯二甲酸,H_2lac =乳酸)。实验数据可以通过提出的催化循环来解释,该催化循环包括通过与Zn(ii)离子配位而激活H_2O_2,然后进行氧转移步骤。在均匀条件下,大量H_2O_2的存在导致两个过氧化氢分子与Zn(ii)配位,因此砜通过从Zn(H_2O)_4(H_2O_2)_2转移两个氧原子而形成砜〜(2+)个活性物种。与均相体系相反,使用[Zn 2(bdc)(L-lac)(dmf)]·DMF作为催化剂不会在反应的初期导致砜的形成。这与拟议的亚砜氧化催化周期是一致的,因为结晶构架中的每个Zn(ii)中心只能激活一个H_2O_2分子。我们的研究表明,微孔骨架[Zn_2(bdc)(L-lac)(dmf)]对H_2O_2分子的吸附和活化比硫化物的吸附和氧的转移更快。

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