Citation:
Le Yuan, Chen Jian-Feng, Wang Wen-Chuan. Determination of Pore Size Distribution of Silica Hollow Microspheres by Experiment and Simulation[J]. Acta Physico-Chimica Sinica,
;2004, 20(11): 1303-1307.
doi:
10.3866/PKU.WHXB20041104
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Grand canonical Monte Carlo (GCMC) simulation and statistics integral equation (SIE) have been used to determine the pore size distribution (PSD) of the silica hollow microspheres (SHMS).HRTEM, XRD and nitrogen adsorption results indicate the occurrence of disordered mesopores on the shells of SHMS. In the simulation, the SHMS have been modeled as cylindrical pore with pore size distribution according to the experimental data. The nitrogen is considered as Lennard-Jones (LJ) spherical molecule. The completely analytical potential model proposed by Wang[10] recently is applied to represent the interactions between the atoms inside the wall and the fluid molecules. The calculated results show that the simulated PSD data are in od agreement with the experimental date, which means that the proposed model for the SHMS is reliable and the combined method of GCMC and SIE is powerful for evaluation of the PSD of the silica hollow spheres.
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