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用于二维纳米材料的二氧化硅纳米颗粒组装

Assembly of silica nanoparticles for two-dimensional nanomaterials.

作者信息

Qhobosheane Monde, Zhang Peng, Tan Weihong

机构信息

Department of Chemistry, University of Florida, Gainesville, Florida 32611, USA.

出版信息

J Nanosci Nanotechnol. 2004 Jul;4(6):635-40. doi: 10.1166/jnn.2004.014.

Abstract

To realize the great potential of nanoparticles as new materials for biomedical applications, the nanoparticles will have to be assembled in such a way that the newly created assembly will have unique properties that conventional materials do not possess. This will enable nanomaterials to be used for many novel applications. We have attempted to assemble silica nanoparticles to create a two-dimensional nanomaterial, which might be useful for biosensor and biochip production. The silica nanoparticles are synthesized and assembled in a monolayer fashion through the use of halogenated silanes. Photolithography techniques are used to pattern the glass surface prior to nanoparticle attachment. The concentration of the silica nanoparticles in the solution controls the surface coverage of nanoparticles on the glass surface. Different patterned silica arrays can be made with controlled surface coverage. The nanoparticle-covered surface is successfully tested for surface-enhanced enzymatic reactivity for the detection of a neurotransmitter, glutamate. This report demonstrates the feasibility of assembling nanoparticles for biosensor development.

摘要

为了实现纳米颗粒作为生物医学应用新材料的巨大潜力,纳米颗粒必须以这样一种方式进行组装,即新形成的组装体将具有传统材料所不具备的独特性能。这将使纳米材料能够用于许多新颖的应用。我们尝试组装二氧化硅纳米颗粒以创建一种二维纳米材料,这可能对生物传感器和生物芯片的生产有用。通过使用卤代硅烷,二氧化硅纳米颗粒以单层方式合成和组装。在纳米颗粒附着之前,使用光刻技术对玻璃表面进行图案化。溶液中二氧化硅纳米颗粒的浓度控制着纳米颗粒在玻璃表面的表面覆盖率。可以制造具有可控表面覆盖率的不同图案化二氧化硅阵列。成功测试了覆盖有纳米颗粒的表面用于检测神经递质谷氨酸的表面增强酶活性。本报告证明了组装纳米颗粒用于生物传感器开发的可行性。

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