Paving the Way to Establish Protocols: Modeling and Predicting Mechanochemical Reactions
Author(s) -
Eva GilGonzález,
Luis A. PérezMaqueda,
Pedro E. SánchezJiménez,
Antonio Perejón
Publication year - 2021
Publication title -
the journal of physical chemistry letters
Language(s) - English
Resource type - Journals
ISSN - 1948-7185
DOI - 10.1021/acs.jpclett.1c01472
Subject(s) - mechanochemistry , parametrization (atmospheric modeling) , function (biology) , power (physics) , work (physics) , computer science , biochemical engineering , materials science , nanotechnology , mechanical engineering , engineering , physics , thermodynamics , quantum mechanics , evolutionary biology , biology , radiative transfer
Parametrization of mechanochemical reactions, or relating the evolution of the reaction progress to the supplied input power, is required both to establish protocols and to gain insight into mechanochemical reactions. Thus, results could be compared, replicated, or scaled up even under different milling conditions, enlarging the domains of application of mechanochemistry. Here, we propose a procedure that allows the parametrization of mechanochemical reactions as a function of the supplied input power from the direct analysis of the milling experiments in a model-free approach, where neither the kinetic model function nor the rate constant equation are previously assumed. This procedure has been successfully tested with the mechanochemical reaction of CH 3 NH 3 PbCl 3 , enabling the possibility to make predictions regardless of the milling device as well as gaining insight into the reaction dynamic. This methodology can work for any other mechanical reaction and definitely paves the way to establish mechanochemistry as a standard synthetic procedure.
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