酪氨酸
手性(物理)
胶体金
拉曼光谱
氨基酸
半胱氨酸
苯丙氨酸
分子
材料科学
纳米颗粒
纳米技术
化学
有机化学
生物化学
物理
光学
酶
手征对称破缺
量子力学
Nambu–Jona Lasinio模型
夸克
作者
Xueping Sun,Ning Wang,Yanxiu He,Huanjun Kong,Haifeng Yang,Xinling Liu
摘要
The chirality of amino acids plays a key role in many biochemical processes, with the development of spectroscopic analysis methods for the chiral differentiation of amino acids being significant. Normal Raman spectroscopy is blind to chirality; however, chiral discrimination of tyrosine (Tyr) (or phenylalanine, Phe) enantiomers using Raman spectra can be achieved assisted by the construction of a simple chiral selector (i.e., cysteine (Cys)-modified Au nanoparticles (NPs)). Due to the synergetic effect between Cys and the Au NPs, the characteristic Raman scattering intensities of the Tyr (or Phe) enantiomer with the same chirality of Cys are enantioselectively boosted by over four-fold compared with those of the counter enantiomer of Tyr (or Phe). The large differences in the Raman signals allow for the determination of enantiomeric excess. Interestingly, such enantiomeric discrimination is not revealed by the common chiral analysis method of circular dichroism spectroscopy. Consequently, it is anticipated that Raman spectroscopy based on molecular vibrations will find broad applications in chirality-related detection with high sensitivity and species specificity.
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