Chiral Lead Halide Perovskites in Action: Unlocking Enantiomer Separation Puzzle

IF 1.8 4区 医学 Q4 BIOCHEMICAL RESEARCH METHODS Biomedical Chromatography Pub Date : 2025-02-07 DOI:10.1002/bmc.6085
Pallavi Singh, Rudra Mukherjee, Anil Kumar
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Abstract

Effective enantiomer separation is vital in many important sectors like pharmaceuticals, agrochemicals, food safety, and biomedical imaging, yet conventional methods are costly, slow, and chemical intensive. This has sparked interest in exploring novel materials like chiral lead halide perovskite nanocrystals to address these challenges. This newly emerging chiral material combines the superior properties of traditional halide perovskites with the unique attributes of chirality, resulting in distinct optoelectronic behaviors. This perspective provides a discussion on future research opportunities in the usage of these chiral LHP NCs for enantiomeric recognition and separation. LHPs exhibit extraordinary photophysical properties, easier surface functionalization, range of bonding interactions, and high surface area to volume ratio that can be used for detecting enantiomers. To the best of our knowledge, the use of chiral halide perovskites for the chiral discrimination of enantiomers has been scarcely reported, presenting a novel opportunity to explore their potential in enantiomeric recognition and separation.

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在制药、农用化学品、食品安全和生物医学成像等许多重要领域中,有效的对映体分离至关重要,但传统方法成本高、速度慢,而且是化学密集型的。这激发了人们探索新型材料(如手性卤化铅包晶纳米晶体)以应对这些挑战的兴趣。这种新兴的手性材料结合了传统卤化物包晶的优越性能和手性的独特属性,从而产生了与众不同的光电行为。本文将从这一角度探讨利用这些手性 LHP NCs 进行对映体识别和分离的未来研究机会。LHP 具有非凡的光物理特性、更易于表面官能化、多种键合作用以及高表面积与体积比,可用于检测对映体。据我们所知,利用手性卤化物包覆晶石对对映体进行手性鉴别的报道还很少,这为探索其在对映体识别和分离方面的潜力提供了一个新的机会。
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来源期刊
Biomedical Chromatography
Biomedical Chromatography 生物-分析化学
CiteScore
3.60
自引率
5.60%
发文量
268
审稿时长
2.3 months
期刊介绍: Biomedical Chromatography is devoted to the publication of original papers on the applications of chromatography and allied techniques in the biological and medical sciences. Research papers and review articles cover the methods and techniques relevant to the separation, identification and determination of substances in biochemistry, biotechnology, molecular biology, cell biology, clinical chemistry, pharmacology and related disciplines. These include the analysis of body fluids, cells and tissues, purification of biologically important compounds, pharmaco-kinetics and sequencing methods using HPLC, GC, HPLC-MS, TLC, paper chromatography, affinity chromatography, gel filtration, electrophoresis and related techniques.
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