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用于光学限幅的碳纳米管基功能材料。

Carbon nanotube-based functional materials for optical limiting.

作者信息

Chen Yu, Lin Ying, Liu Ying, Doyle James, He Nan, Zhuang Xiaodong, Bai Jinrui, Blau Werner J

机构信息

Department of Chemistry, Lab for Advanced Materials, East China University of Science and Technology, Shanghai 200237, People's Republic of China.

出版信息

J Nanosci Nanotechnol. 2007 Apr-May;7(4-5):1268-83. doi: 10.1166/jnn.2007.308.

Abstract

Optical limiting is an important application of nonlinear optics, useful for the protection of human eyes, optical elements, and optical sensors from intense laser pulses. An optical limiter is such a device that strongly attenuates high intensity light and potentially damaging light such as focused laser beams, whilst allowing for the high transmission of ambient light. Optical limiting properties of carbon nanotube suspensions, solubilized carbon nanotubes, small molecules doped carbon nanotubes and polymer/carbon nanotube composites have been reviewed. The optical limiting responses of carbon nanotube suspensions are shown to be dominated by nonlinear scattering as a result of thermally induced solvent-bubble formation and sublimation of the nanotubes, while the solubilized carbon nanotubes optically limit through nonlinear absorption mechanism and exhibit significant solution-concentration-dependent optical limiting responses. In the former case the optical limiting results are independent of nanotube concentrations at the same linear transmittance as that of the solubilized systems. Many efforts have been invested into the research of polymer/carbon nanotube composites in an attempt to allow for the fabrication of films required for the use of nanotubes in a real optical limiting application. The higher carbon nanotube content samples block the incident light more effectively at higher incident energy densities or intensities. The optical limiting mechanism of these composite materials is quite complicated. Besides nonlinear scattering contribution to the optical limiting, there may also be other contributions e.g., nonlinear absorption, nonlinear refraction, electronic absorption and others to the optical limiting. Further improvements in the optical limiting efficiency of the composites and in the dispersion and alignment properties of carbon nanotubes in the polymer matrix could be realized by variation of both nanostructured guest and polymer host, and by ex situ alignment and other methods. It would be very desirable, from the practical application point of view, if one can design broadband optical limiting chromophores that would function in a multimechanistic fashion.

摘要

光学限幅是非线性光学的一项重要应用,对于保护人眼、光学元件和光学传感器免受强激光脉冲的伤害很有用。光学限幅器是一种能强烈衰减高强度光以及诸如聚焦激光束等具有潜在破坏性的光的装置,同时又能使环境光高透射。本文综述了碳纳米管悬浮液、可溶碳纳米管、小分子掺杂碳纳米管以及聚合物/碳纳米管复合材料的光学限幅特性。结果表明,碳纳米管悬浮液的光学限幅响应主要由热致溶剂气泡形成和纳米管升华引起的非线性散射主导,而可溶碳纳米管则通过非线性吸收机制实现光学限幅,并表现出显著的与溶液浓度相关的光学限幅响应。在前一种情况下,在与可溶体系相同的线性透过率下,光学限幅结果与纳米管浓度无关。人们已投入大量精力研究聚合物/碳纳米管复合材料,试图制造出在实际光学限幅应用中使用纳米管所需要的薄膜。碳纳米管含量较高的样品在更高的入射能量密度或强度下能更有效地阻挡入射光。这些复合材料的光学限幅机制相当复杂。除了非线性散射对光学限幅有贡献外,可能还有其他贡献,例如非线性吸收、非线性折射、电子吸收等对光学限幅的贡献。通过改变纳米结构客体和聚合物主体,并采用非原位排列等方法,可以进一步提高复合材料的光学限幅效率以及碳纳米管在聚合物基体中的分散和排列性能。从实际应用的角度来看,如果能够设计出以多机制方式发挥作用的宽带光学限幅发色团,那将是非常理想的。

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