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HYBRID MOLECULE-NANOCRYSTAL PHOTON UPCONVERSION ACROSS THE VISIBLE AND NEAR-INFRARED

机译:可见光和近红外混合分子-纳米光子上转换

摘要

The ability to upconvert two low energy photons into one high energy photon has potential applications in solar cells, photodetectors and data storage. In this disclosure, CdSe and PbSe semiconductor nanocrystals are combined with molecular emitters (diphenylanthracene and rubrene) to upconvert photons in both the visible and near infrared spectral regions. Absorption of low energy photons by the nanocrystals is followed by energy transfer to the molecular triplet states, which then undergo triplet-triplet annihilation to create high energy singlet states that emit upconverted light. By using conjugated organic ligands on the nanocrystals to form an energy cascade, the upconversion process can be enhanced by up to three orders of magnitude. The use of different combinations of nanocrystals and emitters shows that this platform has great flexibility in the choice of both excitation and emission wavelengths.
机译:将两个低能光子上转换为一个高能光子的能力在太阳能电池,光电探测器和数据存储中具有潜在的应用。在本公开中,将CdSe和PbSe半导体纳米晶体与分子发射体(二苯基蒽和红荧烯)组合以在可见和近红外光谱区域中上转换光子。纳米晶体吸收低能光子后,能量转移到分子三重态,然后发生三重态-三重态an灭,以产生高能单重态,并发射上转换的光。通过在纳米晶体上使用共轭有机配体形成能量级联,可以将上转换过程提高三个数量级。纳米晶体和发射体的不同组合的使用表明,该平台在激发和发射波长的选择上都具有极大的灵活性。

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