首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Using the M13 Phage as a Biotemplate to Create Mesoporous Structures Decorated with Gold and Platinum Nanoparticles
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Using the M13 Phage as a Biotemplate to Create Mesoporous Structures Decorated with Gold and Platinum Nanoparticles

机译:使用M13噬菌体作为生物模板来创建用金和铂纳米粒子修饰的介孔结构

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By taking advantage of the physical and chemical properties of the M13 bacteriophage, we have used this virus to synthesize mesoporous silica structures. Major coat protein p8 was chemically modified by attaching thiol groups. As we show, the resulting thiolated phage can be used as a biotemplate able to direct the formation of mesoporous silica materials. Simultaneously, this thiol functionality acts as an anchor for binding metal ions, such as Au3+ and Pt4+ forming reactive M13-metal ionic complexes which evolve into metal nanoparticles (NPs) trapped in the mesoporous network. Interestingly, Au3+ ions are reduced to Au-0 NPs by the protein residues without requiring an external reducing agent. Likewise, silica mesostructures decorated with Au and Pt NPs are prepared in a one-pot synthesis and characterized using different techniques. The obtaind results allow us to propose a mechanism of formation. In addition, gold-containing mesoporous structures are tested for the reduction of 4-nitrophenol (4-NP) and methylene blue (MB) in the presence of NaBH4. Although all of the gold-containing catalysts exhibit catalytic activity, those obtained with thiolated phages present a better performance than that obtained with M13 alone. This behavior is ascribed to the position of the Au NPs, which are partially embedded in the wall of the final mesostructures.
机译:通过利用M13噬菌体的物理和化学特性,我们已经使用这种病毒来合成介孔二氧化硅结构。主要外壳蛋白p8通过连接巯基进行化学修饰。如我们所示,所得的硫醇化噬菌体可以用作能够指导介孔二氧化硅材料形成的生物模板。同时,该硫醇官能团充当结合金属离子(例如Au3 +和Pt4 +)的锚定,形成反应性M13-金属离子络合物,这些络合物演变为捕获在中孔网络中的金属纳米颗粒(NP)。有趣的是,Au3 +离子可通过蛋白质残基还原为Au-0 NP,而无需外部还原剂。同样,用一锅法合成制备用Au和Pt NPs装饰的二氧化硅介观结构,并使用不同的技术对其进行表征。获得的结果使我们能够提出形成机理。此外,在NaBH4存在下,测试了含金的介孔结构还原4-硝基苯酚(4-NP)和亚甲基蓝(MB)的能力。尽管所有含金的催化剂都显示出催化活性,但是用硫醇化噬菌体获得的催化剂表现出比单独使用M13更好的性能。此行为归因于Au NP的位置,它们部分嵌入最终的介孔结构壁中。

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