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PHOTOCATALYSIS USING MIE RESONANCES OF Cu2O DIELECTRIC NANOSTRUCTURES

机译:使用Cu 2 O介电纳米结构的MIE共振的光催化

摘要

Improved photocatalytic and photovoltaic materials wherein an additional energy transfer pathway is available between an optical illumination source and a targeted adsorbate molecule. Dielectric particles are sized and shaped to produce electron excitations and subsequent user-defined chemical transformation without exceeding a band gap energy barrier of the dielectric. Thus, energy transfers that occur between the novel dielectric material and the target adsorbate happen via Mie resonance mediated energy and electron transfer (MRET), which possesses the unique trait of having the capacity to occur below the conduction band.
机译:改进的光催化和光伏材料,其中额外的能量转移途径在光学照射源和靶向吸附分子之间可用。介电颗粒的尺寸和成形为产生电子激发和随后的用户定义的化学转换,而不超过电介质的带隙能量屏障。因此,通过MIE共振介导的能量和电子转移(MRET)发生在新型介电材料和靶吸附物之间的能量转移,该能量和电子转移(MRET)具有具有在导通带下方发生的能力的独特特征。

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