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Stimuli responsive upconversion luminescence nanomaterials and films for various applications

机译:刺激响应的上转换发光纳米材料和薄膜的各种应用

摘要

Upconversion luminescence (UCL) refers to nonlinear optical processes, which can convert near-infrared photons to short-wavelength emission. Recent advances in nanotechnology have contributed to the development of photon upconversion materials as promising new generation candidates of fluorescent bioprobes and spectral converters for biomedical and optoelectronic applications. Apart from the remarkable photoluminescence of the materials under photon excitation, some UCL materials may exhibit intrinsic magnetic, ferroelectric, X-ray absorption properties, and so on. These interesting characteristics provide an opportunity for us to couple a single stimulus or multiple stimuli (electric field, magnetic field, X-ray, electron beam, temperature and pH, etc.) to various types of UCL materials. In this review, we will primarily focus on the stimuli responsive properties of UCL materials beyond light-matter interaction, which can aid both fundamental research and widespread applications of the materials. The mechanisms of the response to various stimuli in the UCL materials are discussed. This article will also highlight recent advances in the development of these materials in response to various stimuli and their applications in multimodal bioimaging, drug delivery and release, electro-optical devices, magnetic, temperature and pH sensors and multiple anti-counterfeiting inks. Lastly, we will present potential directions of future research and challenging issues which arise in expanding the applications of stimuli responsive UCL materials.
机译:上转换发光(UCL)是指非线性光学过程,可以将近红外光子转换为短波长发射。纳米技术的最新进展为光子上转换材料的发展做出了贡献,作为有前途的新一代荧光生物探针和用于生物医学和光电应用的光谱转换器的候选者。除了在光子激发下材料具有显着的光致发光特性外,某些UCL材料还可能表现出固有的磁性,铁电和X射线吸收特性等。这些有趣的特性为我们提供了将单个刺激或多个刺激(电场,磁场,X射线,电子束,温度和pH等)耦合到各种类型的UCL材料的机会。在这篇综述中,我们将主要关注UCL材料在光-物质相互作用之外的刺激响应特性,这有助于基础研究和材料的广泛应用。讨论了UCL材料中对各种刺激的反应机理。本文还将重点介绍响应于各种刺激而开发的这些材料的最新进展及其在多峰生物成像,药物输送和释放,光电器件,磁性,温度和pH传感器以及多种防伪油墨中的应用。最后,我们将介绍未来研究的潜在方向以及在扩大刺激响应性UCL材料的应用中出现的挑战性问题。

著录项

  • 作者

    Tsang MK; Bai G; Hao J;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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