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Yolk–Shell Nanocomposites of a Gold Nanocore Encapsulated in an Electroactive Polyaniline Shell for Catalytic Aerobic Oxidation

机译:卵黄壳纳米复合材料包裹在电活性聚苯胺壳中的有氧催化氧化的金纳米核

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Noble metal nanoparticles (NPs) have been widely applied in nanocatalysis owing to the benefits associated with their miniature size. However, improving their stability and reusability during catalytic applications still remains a great challenge. To this end, monodispersed gold@void@polyaniline yolk–shell nanocomposites (Au@void@PANI YSNs) were synthesized using bottom-up template-assisted methods. Au@SiO_(2) NPs, prepared from a modified sol–gel process, were used as templates for the thiol–ene click reaction with 4-vinylaniline (VAn) to immobilize the aniline moieties, which later performed as the initiation sites for the oxidative copolymerization of aniline from the outer surface of the Au@SiO_(2)–VAn NPs with an electroactive PANI shell (Au@SiO_(2)@PANI NPs). The silica layer sandwiched between the Au core and PANI shell was selectively removed by aqueous hydrofluoric acid to produce Au@void@PANI YSNs with a movable Au core. The electroactive PANI shell not only serves as a physical barrier that prevents the self-association of Au cores and provides a vacant cavity where chemical transformations take place on the Au cores in a controlled manner but also improves the activity and stability of Au cores due to the electrons delocalization and transfer from the Au d orbitals of the nanocores to the π-conjugated ligands of the PANI shell, as proved by the X-ray photoelectron spectroscopy results. The as-synthesized YSNs were found to perform as flexible and reusable heterogeneous catalysts with high catalytic efficiency for the aerobic oxidation of alcohol in aqueous solution. One may find the present study to be a general and effective way to fabricate monodispersed hollow nanomaterials in a controlled and green manner.
机译:贵金属纳米颗粒(NPs)由于具有微型尺寸的优点而被广泛应用于纳米催化。然而,在催化应用过程中提高其稳定性和可重复使用性仍然是巨大的挑战。为此,使用自下而上的模板辅助方法合成了单分散的金@空@聚苯胺卵黄壳纳米复合材料(Au @空@PANI YSN)。用改良的溶胶-凝胶法制备的Au @ SiO_(2)NPs被​​用作与4-乙烯基苯胺(VAn)进行巯基-烯点击反应的模板,以固定苯胺部分,随后将其用作该化合物的起始位点。 Au @ SiO_(2)–VAn NPs外表面的苯胺与电活性PANI壳(Au @ SiO_(2)@PANI NPs)的氧化共聚。用氢氟酸水溶液选择性地去除夹在Au核和PANI壳之间的二氧化硅层,以产生具有可移动Au核的Au @ void @ PANI YSN。电活性PANI壳层不仅充当物理屏障,可防止Au核的自缔合,并提供了一个空洞,可控方式在Au核上发生化学转变,而且还改善了Au核的活性和稳定性。 X射线光电子能谱结果证明,电子离域并从纳米核的Au d轨道转移到PANI壳的π共轭配体。发现合成后的YSN可以作为柔性和可重复使用的多相催化剂,对水溶液中的酒精进行好氧氧化具有很高的催化效率。人们可能会发现本研究是一种以可控且绿色的方式制造单分散空心纳米材料的通用有效方法。

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