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'Dual-Template' synthesis of one-dimensional conductive nanoparticle superstructures from coordination metal-peptide polymer crystals

机译:由配位金属肽聚合物晶体合成一维导电纳米粒子超结构的“双模板”

摘要

Bottom-up fabrication of self-assembled structures made of nanoparticles may lead to new materials, arrays and devices with great promise for myriad applications. Here a new class of metal–peptide scaffolds is reported: coordination polymer Ag(I)-DLL belt-like crystals, which enable the dual-template synthesis of more sophisticated nanoparticle superstructures. In these biorelated scaffolds, the self-assembly and recognition capacities of peptides and the selective reduction of Ag(I) ions to Ag are simultaneously exploited to control the growth and assembly of inorganic nanoparticles: first on their surfaces, and then inside the structures themselves. The templated internal Ag nanoparticles are well confined and closely packed, conditions that favour electrical conductivity in the superstructures. It is anticipated that these Ag(I)-DLL belts could be applied to create long (>100 μm) conductive Ag@Ag nanoparticle superstructures and polymetallic, multifunctional Fe3O4@Ag nanoparticle composites that marry the magnetic and conductive properties of the two nanoparticle types.
机译:自底向上制造由纳米颗粒制成的自组装结构可能会导致新材料,新阵列和新设备的广泛应用。此处报道了一种新型的金属肽支架:配位聚合物Ag(I)-DLL带状晶体,该晶体能够实现更复杂的纳米粒子超结构的双模板合成。在这些生物相关支架中,同时利用肽的自组装和识别能力以及将Ag(I)离子选择性还原为Ag来控制无机纳米粒子的生长和组装:首先在其表面上,然后在结构内部。模板化的内部Ag纳米颗粒被很好地限制和紧密堆积,这些条件有利于上部结构中的导电性。预计这些Ag(I)-DLL带可用于制造长(> 100μm)导电Ag @ Ag纳米粒子超结构和将两种纳米粒子的磁性和导电特性结合在一起的多金属,多功能Fe3O4 @ Ag纳米粒子复合材料。

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