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通过三重态-三重态湮灭来绝对测定上转换的量子产率的方法。

Absolute Method to Certify Quantum Yields of Photon Upconversion via Triplet-Triplet Annihilation.

机构信息

Department of Chemistry and Biochemistry, Graduate School of Engineering, Center for Molecular Systems (CMS) , Kyushu University , 744 Moto-oka , Nishi-ku, Fukuoka 819-0395 , Japan.

PRESTO, JST , Honcho 4-1-8 , Kawaguchi, Saitama 332-0012 , Japan.

出版信息

J Phys Chem A. 2019 Nov 21;123(46):10197-10203. doi: 10.1021/acs.jpca.9b08636. Epub 2019 Nov 11.

DOI:10.1021/acs.jpca.9b08636
PMID:31663744
Abstract

For the consistent development of the field of photon upconversion via triplet-triplet annihilation (TTA-UC), it is pivotal to know the true quantum yield of TTA-UC emission. Although TTA-UC quantum yields have been determined by common relative measurements using quantum yield standards, there is still a discrepancy between the reported values even for the benchmark sensitizer-emitter pair of platinum(II) octaethylporphyrin (PtOEP) and 9,10-diphenylanthracene (DPA). Here, to resolve this situation, we show a method to obtain the absolute quantum yield of TTA-UC photoluminescence. The difficulty in obtaining absolute TTA-UC quantum yield by the integrating sphere measurement is to accurately calibrate the contribution of reabsorbed upconverted emission by triplet sensitizers. The reabsorption correction is successfully carried out by comparing sensitizer phosphorescence with and without the integrating sphere. An absolute TTA-UC quantum yield of the PtOEP-DPA pair is obtained as 36%, which shows a good agreement with the relative TTA-UC quantum yield. An absolute TTA-UC quantum yield of another red-to-blue TTA-UC pair, platinum(II) -tetraphenyltetrabenzoporphyrin (PtTPBP) and 2,5,8,11-tetra--butylperylene (TTBP), is obtained as 27%. These absolute TTA-UC quantum yields can be used as certified values to check the measurement setup and sample condition for determining relative TTA-UC quantum yields in each laboratory.

摘要

为了使通过三重态-三重态湮灭(TTA-UC)的上转换领域的发展保持一致,了解 TTA-UC 发射的真实量子产率至关重要。尽管 TTA-UC 量子产率已经通过使用量子产率标准的常见相对测量来确定,但即使对于铂(II)八乙基卟啉(PtOEP)和 9,10-二苯基蒽(DPA)这一对基准敏化剂-发射器,报告的值之间仍存在差异。在这里,为了解决这种情况,我们展示了一种获得 TTA-UC 光致发光绝对量子产率的方法。通过积分球测量获得绝对 TTA-UC 量子产率的困难在于准确校准三重态敏化剂再吸收上转换发射的贡献。通过比较敏化剂磷光有无积分球的情况,成功地进行了再吸收校正。PtOEP-DPA 对的绝对 TTA-UC 量子产率为 36%,与相对 TTA-UC 量子产率吻合良好。另一个红到蓝的 TTA-UC 对,铂(II)-四苯基四苯并卟啉(PtTPBP)和 2,5,8,11-四--丁基苝(TTBP)的绝对 TTA-UC 量子产率为 27%。这些绝对 TTA-UC 量子产率可用作认证值,以检查每个实验室确定相对 TTA-UC 量子产率的测量设置和样品条件。

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