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Stimuli-responsive polymer nano-science: Shape anisotropy, responsiveness, applications

机译:刺激响应性聚合物纳米科学:形状各向异性,响应性,应用

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Polymeric nanomaterials capable of altering volume, color, or shape have attracted significant scientific interests as these materials become increasingly critical in advancing unique technological developments. Design, synthesis, and assembly of nanomaterials with precisely controlled shapes and directional responsiveness are particularly critical in the development of new functional, near-device level materials. Spatial anisotropies are typically introduced by the placement of symmetrically or asymmetrically located responsive components enabling either interactions with the environment manifested by dimensional or color changes, energy storage and transfer, or diffusion. This review outlines recent advances in the synthesis, fabrication, and assembly of isotropic and anisotropic polymer-based nanomaterials in which dimensional, color, and morphological changes are induced by external stimuli. Specifically, core-shell, hollow, Janus, gibbous/inverse gibbous nanoparticles prepared with precisely controlled morphologies capable of spatially responding totemperature, pH, electromagnetic radiation or biological changes are discussed. Recent advances in the nanoparticle surface modifications which are introduced to guide nano materials to selectively interact and communicate with the environment are also highlighted. Since high aspect ratio nanomaterials, including polymeric nanowires or nanotubes containing responsive components, are particularly attractive in the development of 3D multi-functional objects, their manufacturing as well as applications are examined. Although many uses of stimuli-responsive nanomaterials in electronics, energy conversion, sensing, or biomedicine and other technologies are already in place, there are limitless opportunities for new applications as long as proper regulatory measures are exercised to elevate the impact of these materials on the environment. Polymeric stimuli-responsive nanomaterials offer a tremendous opportunity for the development of cognitive materials' systems, particularly when protein-like polymers containing amino acids joined by polypeptide bonds with enzymes or sugar phosphate moieties as well as other sugar-containing interactions are utilized as building blocks and components of future materials. (C) 2017 Elsevier B.V. All rights reserved.
机译:能够改变体积、颜色或形状的聚合物纳米材料吸引了大量的科学兴趣,因为这些材料在推动独特的技术发展方面变得越来越重要。具有精确控制形状和方向响应性的纳米材料的设计、合成和组装在新型功能性、近设备级材料的开发中尤为关键。空间各向异性通常是通过放置对称或不对称位置的响应组件来引入的,这些组件可以通过尺寸或颜色变化、能量存储和传输或扩散与环境进行交互。本文综述了各向同性和各向异性聚合物基纳米材料的合成、制备和组装的最新进展,在这些材料中,外部刺激会引起尺寸、颜色和形态的变化。具体而言,本文讨论了以精确控制的形态制备的核壳型、空心型、Janus型、三棱/反三棱纳米颗粒,这些纳米颗粒能够对温度、pH值、电磁辐射或生物变化做出空间响应。还重点介绍了纳米粒子表面修饰的最新进展,这些修饰可以引导纳米材料与环境选择性地相互作用和交流。由于高深宽比纳米材料,包括含有响应元件的聚合物纳米线或纳米管,在三维多功能物体的开发中特别有吸引力,因此对其制造和应用进行了研究。尽管刺激响应纳米材料在电子、能量转换、传感或生物医学和其他技术中的许多应用已经到位,但只要采取适当的监管措施来提高这些材料对环境的影响,就有无限的新应用机会。聚合物刺激响应性纳米材料为认知材料系统的发展提供了巨大的机会,尤其是当含有氨基酸的类蛋白质聚合物通过与酶或糖磷酸部分的多肽键以及其他含糖相互作用被用作未来材料的积木和组分时。(C) 2017爱思唯尔B.V.版权所有。

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