Literature DB >> 29071445

Ultrafast structural molecular dynamics investigated with 2D infrared spectroscopy methods.

Jan Philip Kraack1.   

Abstract

Ultrafast, multi-dimensional infrared (IR) spectroscopy has been advanced in recent years to a versatile analytical tool with a broad range of applications to elucidate molecular structure on ultrafast timescales, and it can be used for samples in a many different environments. Following a short and general introduction on the benefits of 2D IR spectroscopy, the first part of this chapter contains a brief discussion on basic descriptions and conceptual considerations of 2D IR spectroscopy. Outstanding classical applications of 2D IR are used afterwards to highlight the strengths and basic applicability of the method. This includes the identification of vibrational coupling in molecules, characterization of spectral diffusion dynamics, chemical exchange of chemical bond formation and breaking, as well as dynamics of intra- and intermolecular energy transfer for molecules in bulk solution and thin films. In the second part, several important, recently developed variants and new applications of 2D IR spectroscopy are introduced. These methods focus on (i) applications to molecules under two- and three-dimensional confinement, (ii) the combination of 2D IR with electrochemistry, (iii) ultrafast 2D IR in conjunction with diffraction-limited microscopy, (iv) several variants of non-equilibrium 2D IR spectroscopy such as transient 2D IR and 3D IR, and (v) extensions of the pump and probe spectral regions for multi-dimensional vibrational spectroscopy towards mixed vibrational-electronic spectroscopies. In light of these examples, the important open scientific and conceptual questions with regard to intra- and intermolecular dynamics are highlighted. Such questions can be tackled with the existing arsenal of experimental variants of 2D IR spectroscopy to promote the understanding of fundamentally new aspects in chemistry, biology and materials science. The final part of the chapter introduces several concepts of currently performed technical developments, which aim at exploiting 2D IR spectroscopy as an analytical tool. Such developments embrace the combination of 2D IR spectroscopy and plasmonic spectroscopy for ultrasensitive analytics, merging 2D IR spectroscopy with ultra-high-resolution microscopy (nanoscopy), future variants of transient 2D IR methods, or 2D IR in conjunction with microfluidics. It is expected that these techniques will allow for groundbreaking research in many new areas of natural sciences.

Keywords:  2D IR Nanoscopy; 2D IR electrochemistry; 2D IR microscopy; Chemical exchange; Energy transfer; Molecular structure; Spectral diffusion; Surface spectroscopy; Transient 2D IR spectroscopy; Ultrafast 2D IR spectroscopy; Vibrational coupling

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Year:  2017        PMID: 29071445     DOI: 10.1007/s41061-017-0172-1

Source DB:  PubMed          Journal:  Top Curr Chem (Cham)        ISSN: 2364-8961


  4 in total

1.  Intermolecular Vibration Energy Transfer Process in Two CL-20-Based Cocrystals Theoretically Revealed by Two-Dimensional Infrared Spectra.

Authors:  Hai-Chao Ren; Lin-Xiang Ji; Tu-Nan Chen; Xian-Zhen Jia; Rui-Peng Liu; Xiu-Qing Zhang; Dong-Qing Wei; Xiao-Feng Wang; Guang-Fu Ji
Journal:  Molecules       Date:  2022-03-26       Impact factor: 4.411

2.  Revealing the Relationship between Electric Fields and the Conformation of Oxytocin Using Quasi-Static Amide-I Two-Dimensional Infrared Spectra.

Authors:  Hai-Chao Ren; Lin-Xiang Ji; Tu-Nan Chen; Yong-Gang Liu; Rui-Peng Liu; Dong-Qing Wei; Xian-Zhen Jia; Guang-Fu Ji
Journal:  ACS Omega       Date:  2022-01-19

Review 3.  Two-dimensional Infrared Spectroscopy Reveals Better Insights of Structure and Dynamics of Protein.

Authors:  Kiran Sankar Maiti
Journal:  Molecules       Date:  2021-11-16       Impact factor: 4.411

4.  Direct observation of reversible bond homolysis by 2D EXSY NMR.

Authors:  Satoshi Takebayashi; Robert R Fayzullin; Richa Bansal
Journal:  Chem Sci       Date:  2022-08-01       Impact factor: 9.969

  4 in total

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