Department of Physics, University of Colorado Boulder, Boulder, Colorado 80309, USA.
Department of Physics, Colorado School of Mines, Golden, Colorado 80401, USA.
Nat Commun. 2017 Mar 15;8:14808. doi: 10.1038/ncomms14808.
Photon upconversion is a fundamental interaction of light and matter that has applications in fields ranging from bioimaging to microfabrication. However, all photon upconversion methods demonstrated thus far involve challenging aspects, including requirements of high excitation intensities, degradation in ambient air, requirements of exotic materials or phases, or involvement of inherent energy loss processes. Here we experimentally demonstrate a mechanism of photon upconversion in a thin film, binary mixture of organic chromophores that provides a pathway to overcoming the aforementioned disadvantages. This singlet-based process, called Cooperative Energy Pooling (CEP), utilizes a sensitizer-acceptor design in which multiple photoexcited sensitizers resonantly and simultaneously transfer their energies to a higher-energy state on a single acceptor. Data from this proof-of-concept implementation is fit by a proposed model of the CEP process. Design guidelines are presented to facilitate further research and development of more optimized CEP systems.
上转换是一种光与物质的基本相互作用,其应用范围从生物成像到微制造。然而,迄今为止所有展示的上转换方法都涉及到具有挑战性的方面,包括高激发强度的要求、在环境空气中的降解、对稀有材料或相的要求,或者固有能量损失过程的参与。在这里,我们实验证明了一种在薄膜中实现光子上转换的机制,这是一种有机发色团的二元混合物,为克服上述缺点提供了一种途径。这种基于单重态的过程,称为协同能量汇集(CEP),利用敏化剂-受体设计,其中多个光激发的敏化剂共振并同时将它们的能量传递到单个受体上的高能态。来自这个概念验证实现的数据通过 CEP 过程的拟议模型进行拟合。提出了设计准则,以促进进一步研究和开发更优化的 CEP 系统。