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Au/Au@Polythiophene Core/Shell Nanospheres for Heterogeneous Catalysis of Nitroarenes

机译:Au / Au @聚噻吩核/壳纳米球用于硝基芳烃的非均相催化

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Monodisperse Au/Au@polythiophene core/ shell nanospheres were facilely prepared through the reduction of gold precursor, AuCl_4~-, by 2-thiopheneacetonitrile in an aqueous solution. Concomitantly, 2-thiopheneacetonitrile polymerized during this redox process. As a result, Au nanoparticle was encapsulated by conductive polymer shell to afford novel core/shell nanospheres. Interestingly, the shell was composed of very tiny Au nanoparticles surrounded with thiophene polymers. Thus, the new material is best described as Au/Au@polythiqphene core/shell nanospheres. FT-IR spectroscopy revealed that the Au nanoparticles were coordinated by the C≡N groups of the polythiophene shell. Some of the C≡N groups were partially hydfolyzed into COOH groups during the redox process because of the acidic reaction condition. The shell Was conductive based on the typical ohmic behavior found in electrical measurement. The Au/Au@polythiophene core/shell nanospheres were found to be very active catalysts for the hydrogenation of various nitroarene compounds into corresponding; aminoarene compounds in the presence of NaBH4. Both hydrophilic and hydrophobic nitroarenes were efficiently hydrpgehated under mild conditions.
机译:通过在水溶液中用2-噻吩乙腈还原金前驱体AuCl 4-可以容易地制备单分散的Au / Au聚噻吩核/壳纳米球。伴随地,在该氧化还原过程中2-噻吩乙腈聚合。结果,金纳米颗粒被导电聚合物壳包封以提供新颖的核/壳纳米球。有趣的是,壳由非常细的Au纳米颗粒组成,周围环绕着噻吩聚合物。因此,最好将新材料描述为Au / Au @ polythiqphene核/壳纳米球。 FT-IR光谱表明,金纳米颗粒由聚噻吩壳的C≡N基团配位。由于酸性反应条件,一些C≡N基团在氧化还原过程中被部分水解成COOH基团。根据电气测量中发现的典型欧姆行为,该外壳是导电的。发现Au / Au @聚噻吩核/壳纳米球是用于将各种硝基芳烃化合物氢化成相应化合物的非常活泼的催化剂。 NaBH4存在下的氨基芳烃化合物。在温和的条件下,亲水性和疏水性硝基芳烃均被有效地氢化。

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