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Reversible and Precise Self-Assembly of Janus Metal-Organosilica Nanoparticles through a Linker-Free Approach

机译:Janus金属-有机硅纳米粒子的无接头方法可逆且精确的自组装

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摘要

Reversible self-assembly of nanoparticles into ordered structures is essential for both fundamental study and practical applications. Although extensive work has been conducted, the demand for simple, cheap, reversible, and versatile ordering methods is still a central issue in current nanoscience and nanotechnology. Here we report a reversible and precise self-assembly of nanoparticles through a linker free and fast approach by manipulating the interparticle forces, e.g., van der Waals (VDW) force and electrostatic force. Because VDW force is nondirectional, an oriented interaction is achieved to induce the directional binding of nanoparticles utilizing the Janus nanostructure. An effective sol gel approach has been developed to synthesize metal-organosilica Janus nanoparticles. Dimers and trimers can be obtained by tuning the steric hindrance. After assembly, "hot-spots" can be generated between adjacent nanoparticles, and dramatic enhancement has been observed in surface-enhanced Raman scattering. The present strategy overcomes several limitations of existing approaches and allows the controlled assembly of small particles into various structures.
机译:纳米颗粒可逆的自组装成有序结构对于基础研究和实际应用都是必不可少的。尽管已经进行了广泛的工作,但是对于简单,廉价,可逆和通用的订购方法的需求仍然是当前纳米科学和纳米技术中的中心问题。在这里,我们通过操纵粒子间的力,例如范德华力(VDW)和静电力,通过自由和快速的连接子方法报告了纳米粒子可逆且精确的自组装。因为VDW力是非定向的,所以利用Janus纳米结构实现了定向相互作用,以诱导纳米颗粒的定向结合。已经开发了一种有效的溶胶凝胶方法来合成金属-有机硅Janus纳米颗粒。二聚体和三聚体可以通过调节位阻来获得。组装后,可以在相邻的纳米粒子之间产生“热点”,并且在表面增强的拉曼散射中观察到显着增强。本策略克服了现有方法的一些局限性,并允许将小颗粒受控地组装成各种结构。

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