Fractional Viscosity Dependence of Reaction Kinetics in Glass-Forming Liquids

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초록

The diffusion of molecules in complex systems such as glasses and cell cytoplasm is slow, heterogeneous, and sometimes nonergodic. The effects of such intriguing diffusion on the kinetics of chemical and biological reactions remain elusive. In this Letter, we report that the kinetics of the polymer loop formation reaction in a Kob-Andersen (KA) glass forming liquid is influenced significantly by the dynamic heterogeneity. The diffusion coefficient D of a KA liquid deviates from the Stokes-Einstein relation at low temperatures and D shows a fractional dependence on the solvent viscosity eta(s), i.e., D similar to eta(-xi D)(s) with xi(D) = 0.85. The dynamic heterogeneity of a KA liquid affects the rate constant k(rxn) of the loop formation and leads to the identical fractional dependence of k(rxn) on eta(s) with k(rxn) similar to eta(-xi)(s) and xi = xi(D), contrary to reactions in dynamically homogeneous solutions where k(rxn) similar to eta(-1)(s).

키워드

PROTEIN-FOLDING REACTIONBETA-HAIRPIN FORMATIONLENNARD-JONES MIXTUREMODE-COUPLING THEORYLOOP FORMATIONINTERNAL-FRICTIONSOLVENT VISCOSITYSINGLE-MOLECULETRANSITION REGIONREACTION DYNAMICS
제목
Fractional Viscosity Dependence of Reaction Kinetics in Glass-Forming Liquids
저자
Kwon, SeulkiCho, Hyun WooKim, JeongminSung, Bong June
DOI
10.1103/PhysRevLett.119.087801
발행일
2017-08-25
유형
Article
저널명
Physical Review Letters
119
8