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Synthesis of Self-Assembled Noble Metal Nanoparticle Chains Using Amyloid Fibrils of Lysozyme as Templates

机译:以溶菌酶淀粉样原纤维为模板合成自组装的贵金属纳米颗粒链

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We reported a facile method for preparing self-assembled noble metal nanoparticle chains by using lysozyme amyloid fibrils as a biotemplate in an aqueous environment. The nanoparticle chains of gold (AuNPCs), palladium (PdNPCs), platinum (PtNPCs) and rhodium (RhNPCs), which are lysozyme fibrils coated by gold, palladium, platinum and rhodium nanoparticles, can be fabricated by simply reducing the corresponding metal salt precursors using NaBH4. Under the same molar ratio between salt precursors and fibrils, two types of morphologies of high-yield AuNPCs (thin- and thick- AuNPCs) were synthesized as a result of adjusting the fibrosis time and temperature in the final stage. Abundant PdNPCs with a length of several micrometres intertwisted with each other to form PdNPC networks. The growth of RhNPCs started from the inner surface of the fibrils and gradually spread to the whole fibre as superabundant rhodium nanoparticles (RhNPs) bound to the fibrils. Finally, PtNPCs at different growing periods were presen...
机译:我们报告了一种简便的方法,通过在水环境中使用溶菌酶淀粉样蛋白原纤维作为生物模板来制备自组装的贵金属纳米颗粒链。金(AuNPCs),钯(PdNPCs),铂(PtNPCs)和铑(RhNPCs)的纳米颗粒链是被金,钯,铂和铑纳米颗粒包覆的溶菌酶原纤维,可以通过简单地还原相应的金属盐前体来制备使用NaBH4。在盐前体和原纤维之间的摩尔比相同的情况下,通过调整最终阶段的纤维化时间和温度,合成了两种类型的高产率AuNPCs(薄型和厚型AuNPCs)。长度为几微米的大量PdNPC相互缠绕以形成PdNPC网络。 RhNPCs的生长从原纤维的内表面开始,并随着与原纤维结合的超大量铑纳米粒子(RhNPs)逐渐扩散到整个纤维。最后,提出了处于不同生长期的PtNPC。

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