Sugunan Sunish K, Greenwald Chelsea, Paige Matthew F, Steer Ronald P
Department of Chemistry, University of Saskatchewan , Saskatoon, SK Canada S7N 5C9.
J Phys Chem A. 2013 Jul 3;117(26):5419-27. doi: 10.1021/jp404587u. Epub 2013 Jun 19.
As part of a continuing effort to find noncoherent photon upconversion (NCPU) systems with improved energy conversion efficiencies, the photophysics of the blue emitter, anthanthrene (An), and the fullerene absorber-sensitizer, C60, have been examined by both steady-state and pulsed laser techniques. An is a promising candidate for NCPU by homomolecular triplet-triplet annihilation (TTA) because its triplet state lies ∼800 cm(-1) below the triplet energy of the C60 donor (thereby improving efficiency by reducing back triplet energy transfer), and its fluorescent singlet state lies in near resonance with double its triplet energy (thus minimizing thermal energy losses in the annihilation process). In fluid solution, efficient triplet-triplet donor-acceptor energy transfer is observed, and rate constants for homomolecular TTA in the An acceptor are estimated to approach the diffusion limit. NCPU is also observed in An + C60 in poly(methylmethacrylate) thin films.
作为不断寻找具有更高能量转换效率的非相干光子上转换(NCPU)系统工作的一部分,已通过稳态和脉冲激光技术研究了蓝色发射体蒽(An)以及富勒烯吸收敏化剂C60的光物理性质。蒽是通过同分子三重态-三重态湮灭(TTA)实现NCPU的一个有前景的候选物,因为其三重态能级比C60供体的三重态能量低约800 cm⁻¹(从而通过减少反向三重态能量转移提高效率),并且其荧光单重态与两倍三重态能量近共振(因此使湮灭过程中的热能损失最小化)。在流体溶液中,观察到了高效的三重态-三重态供体-受体能量转移,并且估计蒽受体中同分子TTA的速率常数接近扩散极限。在聚甲基丙烯酸甲酯薄膜中的蒽 + C60体系中也观察到了NCPU。