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Super-resolution fluorescence microscopy-based single-molecule spectroscopy

期刊

BULLETIN OF THE KOREAN CHEMICAL SOCIETY
卷 43, 期 3, 页码 316-327

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/bkcs.12471

关键词

super-resolution fluorescence microscopy; single-molecule localization microscopy; single-molecule spectroscopy; spectrally resolved super-resolution microscopy; single-molecule sensing

资金

  1. POSCO Cheongam Foundation
  2. National Research Foundation of Korea [2021R1C1C1006700]

向作者/读者索取更多资源

The rise of super-resolution fluorescence microscopy has revolutionized our understanding of the nanoscale world. Combining this technique with spectroscopy allows for rich spectral information of individual molecules, providing multidimensional and functional information that was previously masked in bulk measurements. This review explores recent developments in single-molecule spectroscopic imaging techniques and addresses the challenges in obtaining single-molecule spectroscopic information effectively.
The rise of super-resolution fluorescence microscopy (SRM) has revolutionized our understanding of the nanoscale world. SRM has recently been correlated with spectroscopy techniques to obtain rich spectral information of individual molecules in addition to localization information. This technique ultimately provides multidimensional and functional information of single molecules, which is generally masked in the ensemble averages of previous bulk measurements and creates exciting new opportunities and challenges for single-molecule spectroscopic imaging. We review the recent developments in single-molecule spectroscopic imaging technique and how the challenges are addressed to effectively obtain single-molecule spectroscopic information. Particular attention has been devoted to the applications of this method, including single-molecule chemical kinetic studies and single-molecule polarity sensing. Finally, we address the possible future enhancements and applications. Thus, we demonstrate how a single-molecule spectroscopic imaging technique adds new dimensions of information to the SRM, providing new opportunities in a wide range of research fields.

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