2021
DOI: 10.1021/acsabm.0c01375
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Metal–Protein Hybrid Materials with Desired Functions and Potential Applications

Abstract: Metal nanohybrids are fast emerging functional nanomaterials with advanced structures, intriguing physicochemical properties, and a broad range of important applications in current nanoscience research. Significant efforts have been devoted toward design and develop versatile metal nanohybrid systems. Among numerous biological components, diverse proteins offer avenues for making advanced multifunctional systems with unusual properties, desired functions, and potential applications. This review discusses the r… Show more

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Cited by 25 publications
(22 citation statements)
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“…Proteins are considered excellent biotemplates for the synthesis of metal nanomaterials due to their unique chemical structures that provide multifunctional active binding-sites to mediate the nucleation and the direct synthesis of a large range of inorganic nanostructures, including Ag/Au nanoclusters (NCs) and Ag/Au BMNPs [ 36 ]. NCs are molecular assemblies that consist of a few to a hundred atoms.…”
Section: Green Synthesis Procedures For Noble Bmnps Preparationmentioning
confidence: 99%
“…Proteins are considered excellent biotemplates for the synthesis of metal nanomaterials due to their unique chemical structures that provide multifunctional active binding-sites to mediate the nucleation and the direct synthesis of a large range of inorganic nanostructures, including Ag/Au nanoclusters (NCs) and Ag/Au BMNPs [ 36 ]. NCs are molecular assemblies that consist of a few to a hundred atoms.…”
Section: Green Synthesis Procedures For Noble Bmnps Preparationmentioning
confidence: 99%
“…In the present text we focus on functionalization by organic molecular materials, and refer the reader to a recent review for a more comprehensive discussion of inorganic systems. 165 …”
Section: Functionalization Of Pnfsmentioning
confidence: 99%
“…Assembling nano-objects into well-organized architectures is a promising approach for constructing functional materials, which are highly impossible to fabricate through conventional chemical synthetic routes and microelectronic processing techniques. Indeed, the resultant products formed through this “bottom-up” strategy not only amplify the native function of a basic unit but also can integrate different components to form composite materials. , Importantly, the controllable manipulation of the motif’s spatial position, orientation, and composition leads to a possibility of creating functional materials with novel physicochemical properties. …”
Section: Introductionmentioning
confidence: 99%
“…Among the various self-assembly strategies, a template-based approach is one of the most efficient ways to create promising architectures in multiple dimensions. With the support of a template, several types of foreign nanoparticles solely or together can be guided into forming the prescribed large-sized architecture. In this procedure, the design and functionalization of a template play a significant role in determining the target structure’s formation.…”
Section: Introductionmentioning
confidence: 99%