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通过原位合成,将带有量子点和金属氧化物纳米粒子的聚电解质刷进行碳纳米管表面改性。

Carbon nanotube surface modification with polyelectrolyte brushes endowed with quantum dots and metal oxide nanoparticles through in situ synthesis.

机构信息

CIC biomaGUNE Paseo Miramón, 182 Edificio Empresarial C, E-20009 San Sebastián, Gipuzkoa, Spain.

出版信息

Nanotechnology. 2010 Feb 5;21(5):055605. doi: 10.1088/0957-4484/21/5/055605. Epub 2009 Dec 24.

Abstract

Carbon nanotubes (CNTs) have been successfully coated with a covalently bonded polymer brush of negatively charged poly(3-sulfopropylamino methacrylate) (PSPM) by in situ polymerization employing atomic transfer radical polymerization (ATRP) from initiating silanes attached to the CNTs before the polymerization. The CNT-bonded brush forms a polymer layer or shell-like structure around the CNTs and provides colloidal stabilization for the CNTs in aqueous media. In situ syntheses of nanocrystalline CdS and magnetic iron oxide in the polymer brushes lead to the formation of hybrid nanocomposites consisting of nanoparticle-containing PSPM-coated CNTs that remain readily dispersible and stable in aqueous media. The hybrid nanostructures are synthesized by ion exchange with the cations of the sulfonate groups of the PSPM followed by precipitation and were followed by stepwise zeta potential measurements and TEM. Such structures could have applications in the design of more complex structures and devices. The general synthetic scheme can be extended to include other nanoparticles as brush cargo to broaden the utility or functionality of the CNTs. TEM data shows nanocrystalline CdS in the range of 5-8 nm embedded in the PSPM brush and nanocrystalline iron oxide with a size between 2 and 4 nm, with the former consistent with UV-vis spectroscopy and fluorescence measurements.

摘要

碳纳米管(CNTs)已成功地通过原子转移自由基聚合(ATRP)进行原位聚合,在聚合之前,将附着在 CNTs 上的引发硅烷接枝到 CNTs 上,接枝上带负电荷的聚(3-磺丙基氨基甲基丙烯酸酯)(PSPM)的共价键合聚合物刷。CNT 键合刷在 CNTs 周围形成聚合物层或壳状结构,并为 CNTs 在水介质中提供胶体稳定性。在聚合物刷中原位合成纳米晶 CdS 和磁性氧化铁导致形成包含纳米颗粒的 PSPM 涂覆 CNT 的混合纳米复合材料,该复合材料在水介质中仍易于分散和稳定。通过与 PSPM 的磺酸盐基团的阳离子进行离子交换,随后进行沉淀来合成混合纳米结构,并随后进行逐步zeta 电位测量和 TEM。这种结构可应用于更复杂结构和器件的设计。一般的合成方案可以扩展到包括其他纳米颗粒作为刷载物,以拓宽 CNTs 的用途或功能。TEM 数据显示,纳米晶 CdS 嵌入 PSPM 刷中,尺寸为 5-8nm,纳米晶氧化铁尺寸在 2-4nm 之间,前者与紫外可见光谱和荧光测量结果一致。

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