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首页> 外文期刊>Advanced Functional Materials >Hexahistidine-Tagged Single-Walled Carbon Nanotubes (His_6-tagSWNTs): A Multifunctional Hard Template for Hierarchical Directed Self-Assembly and Nanocomposite Construction
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Hexahistidine-Tagged Single-Walled Carbon Nanotubes (His_6-tagSWNTs): A Multifunctional Hard Template for Hierarchical Directed Self-Assembly and Nanocomposite Construction

机译:六组氨酸标记的单壁碳纳米管(His_6-tagSWNTs):用于分层定向自组装和纳米复合材料构建的多功能硬模板

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摘要

While a hexahistidine affinity tag can be introduced at protein termini or internal sites by standard molecular biology procedures for purification, immobilization, or labeling of proteins, here the versatility of this concept is exploited for the chemical preparation of novel hexahistidine-tagged single-walled carbon nanotubes (His_6-tagSWNTs), a novel hard template useful for solubilizing, assembling, processing, and interfacing SWNTs in aqueous conditions. Water-soluble and exfoliated His_6-tagSWNTs are prepared and fully characterized. This functional molecular module is able to interact via robust physisorption (π-π stacking) with the sidewall of SWNTs and combines the versatility of small, water-soluble reporters (His_6) for hierarchical directed self-assembly (HDSA) and construction of nanocomposites. It is demonstrated that metal coordination bonds with Ni(Ⅱ) can be used for the supramolecular self assembly of His_-tagSWNTs, generating complex reticulated networks and architectures. The His_6-tagSWNTs hard template nano-hybrid is further utilized for directed self-assembly with silica nanoparticles. The versatility of the novel hybrids opens a new era for the rational design, smart (bio)functionalization, processing, interfacing, and self assembling of carbon nanotubes for the construction of multicomposites and more complex systems with controllable spatial organization and programmable properties for a wide range of applications in biology, nanoelectronics, and catalysis.
机译:虽然可以通过标准分子生物学程序在蛋白质末端或内部位点引入六组氨酸亲和标签,以进行蛋白质的纯化,固定或标记,但此概念的多功能性可用于化学制备新型六组氨酸标签的单壁碳纳米管(His_6-tagSWNTs),一种新颖的硬模板,可用于在水性条件下溶解,组装,加工和连接SWNT。制备了水溶性和脱落的His_6-tagSWNT,并进行了充分表征。该功能性分子模块能够通过强大的物理吸附作用(π-π堆积)与SWNT的侧壁相互作用,并结合了小型水溶性报告分子(His_6)的多功能性,可用于分层定向自组装(HDSA)和纳米复合材料的构建。结果表明,具有Ni(Ⅱ)的金属配位键可用于His_tagSWNTs的超分子自组装,产生复杂的网状网络和结构。 His_6-tagSWNTs硬模板纳米杂交进一步用于与二氧化硅纳米粒子的定向自组装。新型混合动力车的多功能性为碳纳米管的合理设计,智能(生物)功能化,加工,接口连接和自组装提供了新的时代,该碳纳米管用于构建具有可控制的空间组织和可编程特性的多种复合材料和更复杂的系统在生物学,纳米电子学和催化领域的应用范围。

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  • 来源
    《Advanced Functional Materials》 |2012年第19期|4009-4015|共7页
  • 作者单位

    Functional ChemoSystem Laboratory University of Strasbourg Faculte de Pharmacie CNRS/UMR7199 74 route du Rhin BP 60024 67401 Illkirch, France;

    University de Strasbourg ICPMS UMR 7504 DSI, 23 rue du Loess 67034 Strabourg, France;

    University de Strasbourg ICPMS UMR 7504 DSI, 23 rue du Loess 67034 Strabourg, France;

    University de Strasbourg ICPMS UMR 7504 DSI, 23 rue du Loess 67034 Strabourg, France;

    Laboratoire de Photochimie et d'lng^nierie Macromol^culaires University de Haute Alsace ENSCMu, 3 rue Alfred Werner, 68093 Mulhouse Cedex, France;

    Laboratory of Biophotonics and Pharmacology University of Strasbourg Faculte de Pharmacie, CNRS/UMR 7213, 74 route du Rhin BP 60024 67401 Illkirch, France;

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