磷光
发光
氨基酸
色氨酸
化学
余辉
四氢呋喃
分析物
苯丙氨酸
组合化学
材料科学
有机化学
物理化学
光电子学
物理
生物化学
荧光
伽马射线暴
量子力学
天文
溶剂
作者
Xiaoyu Chen,Renlong Zhu,Baicheng Zhang,Xiaolong Zhang,Aoyuan Cheng,Hongping Liu,Ruiying Gao,Xuepeng Zhang,Biao Chen,Shuji Ye,Jun Jiang,Guoqing Zhang
标识
DOI:10.1038/s41467-024-47648-z
摘要
Abstract Chiral recognition of amino acids is very important in both chemical and life sciences. Although chiral recognition with luminescence has many advantages such as being inexpensive, it is usually slow and lacks generality as the recognition module relies on structural complementarity. Here, we show that one single molecular-solid sensor, L-phenylalanine derived benzamide, can manifest the structural difference between the natural, left-handed amino acid and its right-handed counterpart via the difference of room-temperature phosphorescence (RTP) irrespective of the specific chemical structure. To realize rapid and reliable sensing, the doped samples are obtained as nanocrystals from evaporation of the tetrahydrofuran solutions, which allows for efficient triplet-triplet energy transfer to the chiral analytes generated in situ from chiral amino acids. The results show that L-analytes induce strong RTP, whereas the unnatural D-analytes produce barely any afterglow. The method expands the scope of luminescence chiral sensing by lessening the requirement for specific molecular structures.
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