Molecular Simulation of MoS2 Exfoliation

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作者
Guoqing Zhou
Pankaj Rajak
Sandhya Susarla
Pulickel M. Ajayan
Rajiv K. Kalia
Aiichiro Nakano
Priya Vashishta
机构
[1] University of Southern California,Collaboratory of Advanced Computing and Simulation, Department of Physics and Astronomy
[2] University of Southern California,Mork Family Department of Chemical Engineering and Materials Science
[3] University of Southern California,Department of Computer Science
[4] Rice University,Department of Materials Science and Nanoengineering
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关键词
Nanojets; MoS2 Surface; Liquid-phase Exfoliation (LPE); Large Shear Stresses; Cavitation Bubbles;
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摘要
A wide variety of two-dimensional layered materials are synthesized by liquid-phase exfoliation. Here we examine exfoliation of MoS2 into nanosheets in a mixture of water and isopropanol (IPA) containing cavitation bubbles. Using force fields optimized with experimental data on interfacial energies between MoS2 and the solvent, multimillion-atom molecular dynamics simulations are performed in conjunction with experiments to examine shock-induced collapse of cavitation bubbles and the resulting exfoliation of MoS2. The collapse of cavitation bubbles generates high-speed nanojets and shock waves in the solvent. Large shear stresses due to the nanojet impact on MoS2 surfaces initiate exfoliation, and shock waves reflected from MoS2 surfaces enhance exfoliation. Structural correlations in the solvent indicate that shock induces an ice VII like motif in the first solvation shell of water.
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