Method of constructing all-atom model of high polymer and supercritical carbon dioxide mixed system
A carbon dioxide and atomic model technology, applied in the computer field, can solve problems such as the inability to achieve quantitative research and the difficulty in controlling the ratio of monomers
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Embodiment 1
[0031] This example explains in detail that the “a method for constructing an all-atom model of a mixed system of polymer and supercritical carbon dioxide” of the present invention is specifically implemented for polymer and polymer with a ratio of 29:1 between polar monomer and non-polar monomer. The construction of the all-atom model of the supercritical carbon dioxide hybrid system is as follows:
[0032] (1) The EMP2 all-atom model is used to carry out all-atom modeling of carbon dioxide, and the Gromacs software is used to simulate the high-temperature annealing of the carbon dioxide system under the NPT ensemble. The annealing simulation process is from (1000bar, 800K,) to (800bar, 600K, ), to (600bar, 400K,) to (400bar, 320K,) and finally to (280bar, 320K). Obtain a stable supercritical carbon dioxide system, and its density versus time curve is as attached figure 1 As shown, the average value is 830.2Kg / m3. This value is close to the experimental density value of 869.2Kg...
Embodiment 2
[0040] This example explains in detail that the “a method for constructing an all-atom model of a polymer and supercritical carbon dioxide mixed system” of the present invention is specifically implemented for polymer and polymer with a ratio of 15:15 between polar monomers and non-polar monomers. The construction of the all-atom model of the supercritical carbon dioxide hybrid system is as follows:
[0041] (1) The EMP2 all-atom model is used to carry out all-atom modeling of carbon dioxide, and the Gromacs software is used to simulate the high-temperature annealing of the carbon dioxide system under the NPT ensemble. The annealing simulation process is from (1000bar, 800K,) to (800bar, 600K, ), to (600bar, 400K,) to (400bar, 320K,) and finally to (280bar, 320K). Obtain a stable supercritical carbon dioxide system, and its density versus time curve is as attached figure 1 As shown, the average value is 830.2Kg / m3. This value is close to the experimental density value of 869.2Kg...
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