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Items Authored or Edited by Ruth T. Williams

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Number of items: 8.

Book Section

Williams, Ruth; Singh, U. and Salter, I.D. (2002). The adsorption of 1-hexene and 3,3-dimethyl-1-butene on Ru-MCM 41. In: Rodríguez-Reinoso, F.; McEnaney, B.; Rouquerol, Jean and Unger, K.K. eds. Proceedings of the 6th International Symposium on the Characterization of Porous Solids (COPS-VI), Volume 144. Elsevier, pp. 633–638.

Singh, U.; Williams, Ruth; Salter, I.D.; Hallam, K.R. and Allen, G.C. (2002). XPS studies of MCM 41 postmodified by a Schiff base copper complex. In: Rodríguez-Reinoso, F.; McEnaney, B.; Rouquerol, Jean and Unger, KK eds. Proceedings of the 6th International Symposium on the Characterization of Porous Solids (COPS-VI), Volume 144. Elsevier, pp. 639–646.

Journal Item

Sing, Kenneth S.W. and Williams, Ruth T. (2005). Empirical precedures for the analysis of physisorption isotherms. Adsorption Science and Technology, 23(10) pp. 839–853.

Singh, Udayshankar G.; Williams, Ruth T.; Hallam, Keith R. and Allen, Geoffrey C. (2005). Exploring the distribution of copper-Schiff base complex covalently anchored onto the surface of mesoporous MCM 41 silica. Journal of Solid State Chemistry, 178(11) pp. 3405–3413.

Singh, Udayshankar G.; Williams, Ruth T.; Hallam, Keith R. and Allen, Geoffrey C. (2005). Synthesis and characterisation of titanium and titanium nitride-functionalised MCM 41 materials. Solid State Sciences, 7(9) pp. 1104–1112.

Sing, Kenneth S.W. and Williams, Ruth T. (2004). Physisorption hysteresis loops and the characterization of nanoporous materials. Adsorption Science and Technology, 22(10) pp. 773–782.

Sing, Kenneth S. W. and Williams, Ruth T. (2004). The use of molecular probes for the characterization of nanoporous adsorbents. Particle and Particle Systems Characterization, 21(2) pp. 71–79.

Slade, R.C.T.; Bambrough, C.M. and Williams, R.T. (2002). An incoherent inelastic neutron scattering investigation of the vibrational spectrum of phenyl-modified (C6H5-) mesoporous silica and its variations in the presence of sorbed benzene (C6H6) and of sorbed deuteriobenzene (C6D6). Physical Chemistry Chemical Physics, 4(21) pp. 5394–5399.

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