Published November 1989 | Version v1
Journal article

Internal structure of porous silica

  • 1. Dept. of Physics and Astronomy, Northwestern Univ., Evanston, IL (USA)

Description

Nuclear magnetic resonance (NMR) relaxation methods have been used to investigate the internal structure of porous silica gelled from colloidal silica and potassium silicate mixtures. These materials possess a narrow pore size distribution with average pore diameter ranging from 470 to 2400 Angstrom (47 to 240 nm) as determined from mercury intrusion porosimetry. NMR relaxation measurements were performed on deionized water impregnated into the pore space. These results determine the distribution of local surface-to-volume ratios and show that all of the silica samples are very uniform on a length scale greater than 5 μm. NMR relaxation measurements performed on silica samples partially filled with water provide a precise confirmation of the theoretical model upon which the NMR pore structure analysis is based. Measurements of the relaxation strength at the water-silica interface were found to depend systematically on the initial composition of the material. The self-diffusion coefficient of water, saturated in the pore space, is reduced by 14% from its bulk value

Additional details

Additional titles

Subtitle (English)
A model system for characterization by nuclear magnetic resonance

Publishing Information

Journal Title
Journal of the American Ceramic Society
Journal Volume
72
Journal Issue
11
Series
J. Am. Ceram. Soc.
Journal Page Range
2126-2130
ISSN
0002-7820
CODEN
JACTA