Solar energy paper index
Meso-electron-withdrawing pentamethine cyanines achieve large anti-Stokes blue-emitting triplet-triplet annihilation upconversion
One-line summary
A solar energy research paper on Meso-electron-withdrawing pentamethine cyanines achieve large anti-Stokes blue-emitting triplet-triplet annihilation upconversion.
Engineering notes
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Chinese explanation / 中文解读
中文解读待补充:本站会优先为光伏效率、钙钛矿太阳能电池、储能技术、太阳能热利用、BIPV、并网技术等高价值论文补充中文说明。
Original abstract
Developing metal-free triplet-triplet annihilation upconversion systems that operate under far-red excitation and produce efficient blue emission is challenging due to an inherent trade-off between a large anti-Stokes shift and a high upconversion quantum yield. Here we show that introducing electron-withdrawing groups at the meso-position of a pentamethine cyanine scaffold narrows the singlet-triplet energy gap, suppresses photoisomerization, and promotes the intersystem crossing. These meso-electron-withdrawing pentamethine cyanines possess higher triplet state energy levels than their meso-unsubstituted counterparts. In particular, the meso-hemicyanine-derived sensitizer exhibits characteristic low-temperature phosphorescence. When paired with perylene, it extends the excitation wavelength to 721 nm and yields blue emission at 470 nm, yielding an upconversion quantum yield of 9.6% (upper limit 50%). This study demonstrates that molecular engineering of pentamethine cyanines via meso-position electron-withdrawing substitution effectively reduces the singlet-triplet energy gap, enabling the design of organic triplet-triplet annihilation upconversion materials and advancing their utility in photonics and biophotonics. Electron-deficient meso-substituted pentamethine cyanines featuring narrow ΔEST, rapid intersystem crossing, and high triplet yield enable efficient blue-emitting triplet-triplet annihilation upconversion, accompanied by a large anti-Stokes shift.
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