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Revisiting 30 years of biofunctionalization and surface chemistry of inorganic nanoparticles for nanomedicine

机译:回顾30年来用于纳米药物的无机纳米粒子的生物功能化和表面化学

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摘要

In the last 30 years we have assisted to a massive advance of nanomaterials in material science. Nanomaterials and structures, in addition to their small size, have properties that differ from those of larger bulk materials, making them ideal for a host of novel applications. The spread of nanotechnology in the last years has been due to the improvement of synthesis and characterization methods on the nanoscale, a field rich in new physical phenomena and synthetic opportunities. In fact, the development of functional nanoparticles has progressed exponentially over the past two decades. This work aims to extensively review 30 years of different strategies of surface modification and functionalization of noble metal (gold) nanoparticles, magnetic nanocrystals and semiconductor nanoparticles, such as quantum dots. The aim of this review is not only to provide in-depth insights into the different biofunctionalization and characterization methods, but also to give an overview of possibilities and limitations of the available nanoparticles.
机译:在过去的30年中,我们协助纳米材料在材料科学领域取得了巨大进步。纳米材料和结构除了体积小外,其性能还不同于较大的块状材料,因此非常适合许多新颖的应用。近年来,纳米技术的普及归因于纳米级合成和表征方法的改进,这是一个充满新物理现象和合成机会的领域。实际上,在过去的二十年中,功能性纳米粒子的发展呈指数级增长。这项工作旨在广泛地回顾30年来不同的贵金属(金)纳米颗粒,磁性纳米晶体和半导体纳米颗粒(例如量子点)的表面改性和功能化策略。这篇综述的目的不仅在于提供对不同生物功能化和表征方法的深入见解,而且还概述了可用纳米颗粒的可能性和局限性。

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