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Reversible assembly of nanoparticles: theory, strategies and computational simulations

机译:纳米粒子的可逆组装:理论、策略和计算模拟

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摘要

The significant advances in synthesis and functionalization have enabled the preparation of high-quality nanoparticles that have found a plethora of successful applications. The unique physicochemical properties of nanoparticles can be manipulated through the control of size, shape, composition, and surface chemistry, but their technological application possibilities can be further expanded by exploiting the properties that emerge from their assembly. The ability to control the assembly of nanoparticles not only is required for many real technological applications, but allows the combination of the intrinsic properties of nanoparticles and opens the way to the exploitation of their complex interplay, giving access to collective properties. Significant advances and knowledge gained over the past few decades on nanoparticle assembly have made it possible to implement a growing number of strategies for reversible assembly of nanoparticles. In addition to being of interest for basic studies, such advances further broaden the range of applications and the possibility of developing innovative devices using nanoparticles. This review focuses on the reversible assembly of nanoparticles and includes the theoretical aspects related to the concept of reversibility, an up-to-date assessment of the experimental approaches applied to this field and the advanced computational schemes that offer key insights into the assembly mechanisms. We aim to provide readers with a comprehensive guide to address the challenges in assembling reversible nanoparticles and promote their applications.
机译:合成和重大进展功能化已经准备了找到一个高质量的纳米颗粒大量成功应用。物理化学性质的纳米粒子通过控制操纵的大小,形状、成分和表面化学,但是他们的技术应用的可能性进一步扩大利用属性摆脱他们的组装。不仅控制纳米粒子的组装需要对很多真正的技术应用程序,但允许的结合纳米粒子的内在属性和打开复杂的开发相互作用,给集体属性。获得了在过去的几十年里纳米颗粒装配实现成为可能越来越多的可逆的策略组装的纳米粒子。基本研究的兴趣,这样的进步进一步扩大的范围和应用设备创新的可能性使用纳米粒子。可逆组装的纳米粒子,包括相关的理论方面的概念可逆性的最新评估实验方法应用于这一领域先进的计算方案,提供关键洞察组装机制。为读者提供一个全面的指南解决在组装可逆的挑战纳米颗粒,促进他们的应用程序。

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