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Electron-Deficient Near-Infrared Pt(II) and Pd(II) Benzoporphyrins with Dual Phosphorescence and Unusually Efficient Thermally Activated Delayed Fluorescence: First Demonstration of Simultaneous Oxygen and Temperature Sensing with a Single Emitter

机译:具有双磷光和异常有效的热激活延迟荧光的电子缺乏近红外线Pt(II)和Pd(II)苯丙烯林:首先用单个发射器进行同时氧和温度感测的演示

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We report a family of Pt and Pd benzoporphyrin dyes with versatile photophysical properties and easy access from cheap and abundant chemicals. Attaching 4 or 8 alkylsulfone groups onto a meso-tetraphenyltetrabenzoporphyrin (TPTBP) macrocylcle renders the dyes highly soluble in organic solvents, photostable, and electron-deficient with the redox potential raised up to 0.65 V versus the parent porphyrin. The new dyes intensively absorb in the blue (Soret band, 440-480 nm) and in the red (Q-band, 620-650 nm) parts of the electromagnetic spectrum and show bright phosphorescence at room-temperature in the NIR with quantum yields up to 30% in solution. The small singlet triplet energy gap yields unusually efficient thermally activated delayed fluorescence (TADF) at elevated temperatures in solution and in polymeric matrices with quantum yields as high as 27% at 120 degrees C, which is remarkable for benzoporphyrins. Apart from oxygen sensing, these properties enable unprecedented simultaneous, self-referenced oxygen and temperature sensing with a single indicator dye: whereas oxygen can be determined either via the decay time of phosphorescence or TADF, the temperature is accessed via the ratio of the two emissions. Moreover, the dyes are efficient sensitizers for triplet triplet annihilation (TTA)based upconversion making possible longer sensitization wavelength than the conventional benzoporphyrin complexes. The Ptocta-sulfone dye also features interesting semireversible transformation in basic media, which generates new NIR absorbing species.
机译:我们报告了一种PT和Pd苯并卟啉染料,具有多功能的光性特性,轻松获得便宜和丰富的化学品。将4或8个烷基砜基团附着在Meso-Tetraphenyltabopoporin(TPTBP)宏观偶联中,使染料高度可溶于有机溶剂,光稳定和电子缺陷,氧化还原电位升高至0.65V与母卟啉。新的染料在蓝色(Soret带,440-480nm)中强烈吸收电磁谱的红色(Q频段,620-650nm)部分,并在NIR中显示出在NIR的室温下的明亮磷光,具有量子产率解决方案高达30%。小单向三态度能量差距在溶液中的升高温度下产生异常有效的热活化延迟荧光(TADF),在120℃下的量子产率高达27%的聚合物基质,这对于苯丙替林来说是显着的。除氧感测外,这些性能使得前所未有的同时,自我参考的氧气和用单个指示器染料的温度感测:而氧气可以通过磷光或TADF的衰减时间来确定,通过两个排放的比率访问温度。此外,染料是基于常规苯丙替林配合物的三元三态湮灭(TTA)的高增强波长的高胶质三态湮灭(TTA)的有效敏化剂。聚硫酮染料还具有基本介质的有趣半转动转型,产生新的NIR吸收物种。

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