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Enabling Photon Upconversion and Precise Control of Donor–Acceptor Interaction through Interfacial Energy Transfer

机译:通过界面能量转移实现光子上转换和供体-受体相互作用的精确控制

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Upconverting materials have achieved great progress in recent years, however, it remains challenging for the mechanistic research on new upconversion strategy of lanthanides. Here, a novel and efficient strategy to realize photon upconversion from more lanthanides and fine control of lanthanide donor–acceptor interactions through using the interfacial energy transfer (IET) is reported. Unlike conventional energy‐transfer upconversion and recently reported energy‐migration upconversion, the IET approach is capable of enabling upconversions from Er 3+ , Tm 3+ , Ho 3+ , Tb 3+ , Eu 3+ , Dy 3+ to Sm 3+ in NaYF 4 ‐ and NaYbF 4 ‐based core–shell nanostructures simultaneously. Applying the IET in a Nd–Yb coupled sensitizing system can also enable the 808/980 nm dual‐wavelength excited upconversion from a single particle. More importantly, the construction of IET concept allows for a fine control and manipulation of lanthanide donor–acceptor interactions and dynamics at the nanometer‐length scale by establishing a physical model upon an interlayer‐mediated nanostructure. These findings open a door for the fundamental understanding of the luminescence dynamics involving lanthanides at nanoscale, which would further help conceive new scientific concepts and control photon upconversion at a single lanthanide ion level.
机译:上转换材料近年来取得了很大的进展,但是,对于镧系元素新上转换策略的机理研究仍然具有挑战性。在这里,报道了一种新颖有效的策略,可以通过使用界面能转移(IET)从更多的镧系元素实现光子上转换,并精细控制镧系元素的供体-受体相互作用。与传统的能量转移上转换和最近报道的能量迁移上转换不同,IET方法能够实现从Er 3+,Tm 3+,Ho 3+,Tb 3+,Eu 3+,Dy 3+到Sm 3+的上转换。同时基于NaYF 4和NaYbF 4的核壳纳米结构。在Nd-Yb耦合增感系统中应用IET还可以从单个粒子实现808/980 nm双波长激发的上转换。更重要的是,通过在层间介导的纳米结构上建立物理模型,IET概念的构建可在纳米级尺度上对镧系元素供体-受体的相互作用和动力学进行精细控制和操纵。这些发现为对涉及纳米级镧系元素的发光动力学的基本理解打开了一扇门,这将进一步帮助构想新的科学概念并在单个镧系元素离子水平上控制光子上转换。

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