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Hydrostatic Pressure-Induced Spectral Variation of Reichardt's Dye: A Polarity/Pressure Dual Indicator.


ABSTRACT: The famous solvatochromic Reichardt's dye was applied to quantify hydrostatic pressure in media. The UV/vis spectra of the dye in various organic solvents are shifted bathochromically or hypsochromically at the shorter- or longer-wavelength band, respectively, upon hydrostatic pressurization. The E T value, determined by an absorption maximum, in ethyl acetate increases from 38.5 kcal mol-1 at 0.1 MPa to 39.2 kcal mol-1 at 300 MPa, which is mostly equal to the one in chloroform at 0.1 MPa. These spectroscopic origins were supported by the time-dependent density functional theory (TD-DFT) calculations. The concept and approach proposed in this paper, i.e., a dual indicator, should attract the attention of a broad spectrum in multidisciplinary science.

SUBMITTER: Miyagawa A 

PROVIDER: S-EPMC6964516 | biostudies-literature | 2020 Jan

REPOSITORIES: biostudies-literature

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Hydrostatic Pressure-Induced Spectral Variation of Reichardt's Dye: A Polarity/Pressure Dual Indicator.

Miyagawa Akihisa A   Eng Julien J   Okada Tetsuo T   Inoue Yoshihisa Y   Penfold Thomas James TJ   Fukuhara Gaku G  

ACS omega 20191226 1


The famous solvatochromic Reichardt's dye was applied to quantify hydrostatic pressure in media. The UV/vis spectra of the dye in various organic solvents are shifted bathochromically or hypsochromically at the shorter- or longer-wavelength band, respectively, upon hydrostatic pressurization. The <i>E</i> <sub>T</sub> value, determined by an absorption maximum, in ethyl acetate increases from 38.5 kcal mol<sup>-1</sup> at 0.1 MPa to 39.2 kcal mol<sup>-1</sup> at 300 MPa, which is mostly equal to  ...[more]

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