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Recent Progress in Photon Upconverting Gels

机译:光子上转换凝胶的最新进展

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Recent progress in the development of gels showing triplet-triplet annihilation based photon upconversion (TTA-UC) is reviewed. Among the two families of upconverting gels reported, those display TTA-UC based on molecular diffusion show performances comparable to those in solutions, and the TTA-UC therein are affected by dissolved molecular oxygen. Meanwhile, air-stable TTA-UC is achieved in organogels and hydrogels by suitably accumulating TTA-UC chromophores which are stabilized by hydrogen bonding networks of the gelators. The unique feature of the air-stable upconverting gels is that the self-assembled nanostructures are protected from molecular oxygen dissolved in the microscopically interconnected solution phase. The presence of the bicontinuous structures formed by the upconverting fibrous nanoassemblies and the solution phase is utilized to design photochemical reaction systems induced by TTA-UC. Future challenges include in vivo applications of hydrogels showing near infrared-to-visible TTA-UC.
机译:综述了显示基于三重态-三重态an灭的光子上转换(TTA-UC)的凝胶的最新进展。在报道的两个上转换凝胶家族中,显示基于分子扩散的TTA-UC的性能与溶液中的性能相当,并且其中的TTA-UC受溶解的分子氧的影响。同时,通过适当地积累通过胶凝剂的氢键网络稳定的TTA-UC发色团,在有机凝胶和水凝胶中获得了空气稳定的TTA-UC。空气稳定的上转换凝胶的独特之处在于,可以保护自组装的纳米结构免受溶解在微观互连溶液相中的分子氧的影响。由上转换纤维纳米组件和溶液相形成的双连续结构的存在被用于设计由TTA-UC诱导的光化学反应系统。未来的挑战包括在体内应用显示近红外-可见TTA-UC的水凝胶。

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