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Functionalized dye encapsulated polymer nanoparticles attached with a BSA scaffold as efficient antenna materials for artificial light harvesting

机译:功能化染料聚合物封装纳米粒子连接与BSA脚手架高效的人造光天线的材料收获

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摘要

A potential strategy for a new generation light harvesting system is multi-chromophoric donor-acceptor pairs where light energy is absorbed by an antenna complex and subsequently transfers its energy to the acceptor via energy transfer. Here, we design a system of a functionalized polymer nanoparticle-protein scaffold for efficient light harvesting and white light generation where a dye doped polymer nanoparticle acts as a donor and a dye encapsulated BSA protein acts as an acceptor. Analysis reveals that 91.3% energy transfer occurs from the dye doped polymer nanoparticle to the dye encapsulated BSA protein. The antenna effect of this light harvesting system is found to be 31 at a donor to acceptor ratio of 0.82 : 1 which is unprecedented. The enhanced effective molar extinction coefficient of the acceptor dye is potential for the light harvesting system. Bright white light emission with a quantum yield of 14% under single wavelength excitation is obtained by changing the ratio of donor to acceptor. Analysis reveals that the efficient energy transfer in this polymer-protein assembly may open up new possibilities in designing artificial light harvesting systems for future applications.
机译:一个潜在的战略新一代光收获系统multi-chromophoric亲双光能量在哪里吸收天线复杂,随后通过能量转移的能量受体转移。功能化聚合物nanoparticle-protein脚手架高效光收获和白色光代染料掺杂聚合物纳米颗粒作为捐赠者和染料封装BSA蛋白作为受体。分析表明,91.3%的能量转移发生的染料掺杂聚合物纳米颗粒染料封装BSA蛋白。发现这光收集系统的影响在捐赠者31受体的比例0.82:1这是前所未有的。受体染料的摩尔消光系数是潜在的光收集系统。明亮的白色发光量子产率单波长激发下的14%通过改变捐赠者的比率受体。能量转移在这个polymer-protein组装设计可能会打开新的可能性人造光收集系统的未来应用程序。

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