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Ligand enhanced upconversion of near-infrared photons with nanocrystal light absorbers

机译:配体增强了纳米晶体光吸收剂对近红外光子的上转换

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摘要

We designed and synthesized a tetracene derivative 4-(tetracen-5-yl)benzoic acid (CPT) as a transmitter ligand used in PbS/PbSe nanocrystal (NC) sensitized upconversion of near infrared (NIR) photons. Under optimal conditions, comparing CPT functionalized NCs with unfunctionalized NCs as sensitizers, the upconversion quantum yield (QY) was enhanced 81 times for 2.9 nm PbS NCs from 0.021% to 1.7%, and 11 times for 2.5 nm PbSe NCs from 0.20% to 2.1%. The surface density of CPT controls the solubility of functionalized NCs and the upconversion QY. By increasing the concentration of CPT in the ligand exchange solution, the number of CPT ligand per NC increases. The upconversion QY is maximized at a transmitter density of 1.2 nm(-2) for 2.9 nm PbS, and 0.32 nm(-2) for 2.5 nm PbSe. Additional transmitter ligands inhibit photon upconversion due to triplet-triplet annihilation (TTA) between two neighboring CPT molecules on the NC surface. 2.1% is the highest reported QY for TTA-based photon upconversion in the NIR with the use of earth-abundant materials.
机译:我们设计并合成了并四苯衍生物4-(tetracen-5-yl)苯甲酸(CPT)作为PbS / PbSe纳米晶体(NC)敏化近红外(NIR)光子的上转换体中的发射体配体。在最佳条件下,将CPT功能化的NCs与未功能化的NCs作为敏化剂进行比较,对于2.9 nm PbS NCs,上转换量子产率(QY)提高了81倍,从0.021%提高到1.7%,而2.5 nm PbSe NCs的上转换量子产率从0.20%提高到2.1的11倍。 %。 CPT的表面密度控制官能化NC的溶解度和上转换QY。通过增加配体交换溶液中CPT的浓度,每个NC的CPT配体数量增加。上转换QY在2.9 nm PbS的发射器密度为1.2 nm(-2)时和在2.5 nm PbSe的发射器密度为0.32 nm(-2)时达到最大。由于NC表面上两个相邻CPT分子之间的三重态-三重态an灭(TTA),其他的发射体配体抑制了光子的上转换。 2.1%是报道的使用大量地球物质的近红外光谱中基于TTA的光子上转换的最高QY。

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