首页> 外文期刊>Journal of the American Chemical Society >Design Of Sers-encoded, Submicron, Hollow Particlesthrough Confined Growth Of Encapsulated Metal Nanoparticles
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Design Of Sers-encoded, Submicron, Hollow Particlesthrough Confined Growth Of Encapsulated Metal Nanoparticles

机译:封闭金属纳米粒子的有限生长设计Sers编码亚微米空心粒子

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摘要

The synthetic architectures of complex inorganic nanostructures, including multifunctional hollow capsules, are expected to play key roles in many different applications, such as drug delivery, photonic crystals, nanoreactors, and sensing. Implementation of novel strategies for the fabrication of such materials is needed because of the infancy of this knowledge, which still limits progress in certain areas. Herein we report a straightforward synthetic approach for the development of multifunctional submicron reactors comprising catalytic gold nanoparticles (2-3 nm) confined inside hollow silica capsules. Additionally, the confined growth of encapsulated metal nanoparticles was carried out to evidence the usefulness and functionality of these reactors in catalytic applications and as an approach for the development of novel complex nanostructures. Their potential and multifunctionality have been pointed out by fabrication of SERS-encoded submicrometer particles with shape and size uniformity for use in antigen biosensing; this was accomplished via codification of gold nanoparticle islands grown onto their inner surfaces.
机译:复杂的无机纳米结构的合成结构,包括多功能空心胶囊,有望在许多不同的应用中发挥关键作用,例如药物输送,光子晶体,纳米反应器和传感。由于这种知识的起步还需要实施新颖的策略来制造这种材料,因此仍然限制了某些领域的进展。在此,我们报告了一种直接的合成方法,用于开发多功能亚微米反应器,该反应器包含被限制在空心二氧化硅胶囊内部的催化金纳米粒子(2-3纳米)。另外,进行包封的金属纳米颗粒的密闭生长以证明这些反应器在催化应用中的有用性和功能性,并作为开发新型复杂纳米结构的方法。通过制备形状和大小均一的用于抗原生物传感的具有SERS编码的亚微米颗粒,指出了它们的潜力和多功能性。这是通过将生长在其内表面的金纳米粒子岛进行编码来实现的。

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