In-situ fabrication of highly-fluorescent nanohybrids based on Carbon Nanotubes and Gold Nanoparticles

Renjia Zhou, Mang Wang, Hongzheng Chen
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Abstract

Highly-fluorescent, water-soluble and ambient-stable nanohybrids based on multi-walled carbon nanotubes and gold nanoparticles (Au@MWNTs) with high-density and well-distributed Au nanoparticles were obtained assisted by organic optoelectronic active molecules as an interlinker and stabilizer via a facile in-situ fabrication method in aqueous solution, and were confirmed by TEM, SEM, EDX, UV-Vis measurements. The Au nanoparticle diameters of the hybrids can be controlled and decreased to a limited small range with high stability via this in-situ fabrication approach. The optical properties of the hybrids were studied, and it was found that the hybrid exhibited strong visible luminescence under the UV lamp irradiation, which might extend its potential application on light emitting sources, biological labeling etc.
基于碳纳米管和金纳米颗粒的高荧光纳米杂化材料的原位制备
以多壁碳纳米管和金纳米颗粒(Au@MWNTs)为基础,在有机光电活性分子的辅助下,通过水溶液原位制备的方法获得了高密度、分布均匀的金纳米颗粒,并通过TEM、SEM、EDX、UV-Vis等测试手段对其进行了验证。通过这种原位制备方法,可以控制金纳米颗粒的直径,并将其减小到有限的小范围内,具有很高的稳定性。对杂化物的光学性质进行了研究,发现该杂化物在紫外灯照射下表现出较强的可见光,这可能扩大其在发光光源、生物标记等方面的潜在应用。
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