首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Functionalization of carbon and gold nanomaterials using PNIPAAm grafted dextran: a general route towards robust and smart nanomaterials
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Functionalization of carbon and gold nanomaterials using PNIPAAm grafted dextran: a general route towards robust and smart nanomaterials

机译:使用PNIPAAm接枝的葡聚糖对碳和金纳米材料进行功能化:通向坚固和智能纳米材料的一般途径

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摘要

A universal functionalization platform based on PNIPAAm grafted dextran smart polymers for, but not limited to, carbon and gold nanomaterials, is developed. The dextran based smart polymer contains three indispensable components: 1) dextran - to provide hydrophilicity and stability; 2) PNIPAAm - to provide stimuli-sensitivity; 3) dodecylthiocarbonothioylthio groups (or aminolysis-generated thiols) -to provide feasible functionalization through stable interactions between polymer and nanomaterials. The readily accessible distinctive versions of polymers can provide necessary and efficient interactions with a variety of nanomaterials: the unique dodecyl end groups provide the effective functionalization of SWNT and NGO in a noncovalent manner, while the AuNR can be covalently functionalized through aminolysis-generated thiols. These functionalized nanomaterials are simultaneously endowed with well-retained properties of interest, excellent stability and smart properties: they exhibit superior stability under various conditions and the absorption, fluorescent and aggregation properties can be smartly tuned by temperature and NIR light. The establishment of this general approach is an important step forward for development and wide-application of smart nanomaterials in catalysts, actuators, sensors and biomedicine.
机译:开发了基于PNIPAAm接枝的葡聚糖智能聚合物的通用功能化平台,该平台适用于但不限于碳和金纳米材料。基于葡聚糖的智能聚合物包含三个必不可少的成分:1)葡聚糖-提供亲水性和稳定性; 2)PNIPAAm-提供刺激敏感性; 3)十二烷基硫代羰基硫代硫基(或氨解生成的硫醇)-通过聚合物和纳米材料之间的稳定相互作用提供可行的官能化。容易获得的独特形式的聚合物可以提供与各种纳米材料的必要和有效的相互作用:独特的十二烷基端基以非共价方式提供SWNT和NGO的有效功能化,而AuNR可以通过氨解生成的硫醇进行共价功能化。这些功能化的纳米材料同时具有良好保留的目标特性,出色的稳定性和智能特性:它们在各种条件下均表现出优异的稳定性,并且可以通过温度和近红外光智能地调节其吸收,荧光和聚集特性。建立这种通用方法是智能纳米材料在催化剂,致动器,传感器和生物医学领域的开发和广泛应用的重要一步。

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