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Featured researches published by G.Z. Cao.


Solid State Ionics | 1993

Modelling and analysis of CVD processes for ceramic membrane preparation

H.W. Brinkman; G.Z. Cao; J. Meijerink; K.J. de Vries; A.J. Burggraaf

A mathematical model is presented that describes the modified chemical vapour deposition (CVD) process (which takes place in advance of the electrochemical vapour deposition (EVD) process) to deposit ZrO2 inside porous media for the preparation and modification of ceramic membranes. The isobaric model takes into account intrapore Knudsen diffusion of ZrCl4 and H2O, which enter the membrane from opposite sides, and Langmuir-Hinshelwood reaction of the solid product ZrO2 on the internal pore wall. The processes occurring in one single pore are investigated, and the change in pore geometry during deposition is taken into account. Based upon this model, the deposition profile is studied. The model fits reasonably well with experimental results.


Journal of Materials Chemistry | 1993

Kinetic study of the modified chemical vapour deposition process in porous media

G.Z. Cao; H.W. Brinkman; J. Meijerink; Karel Jan de Vries; A.J. Burggraaf

A kinetic study of the modified CVD process in porous ceramic substrates is reported by both theoretical analysis and an experimental approach. The theoretical analysis indicates that with a heterogeneous reaction the decrease in the pore size is proportional to the deposition time and the pore closure time is proportional to the original pore size. With a homogeneous reaction the pore size decreases exponentially with the deposition time and it is very difficult to achieve pore closure. The deposition width should decrease with increasing deposition temperature in a homogeneous reaction, while in a heterogeneous reaction the deposition width could either increase or decrease with increasing deposition temperature. The experimental results indicate that the deposition of yttria-stabilized zirconia inside pores of porous ceramic membranes is a heterogeneous reaction.


Journal of Materials Chemistry | 1993

Growth of thin dense gas-tight (Tb,Y)-ZrO2 films by electrochemical vapour deposition

G.Z. Cao; J. Meijerink; H.W. Brinkman; Karel Jan de Vries; A.J. Burggraaf

Electrochemical vapour deposition has been applied to depositing thin, dense, gas-tight terbia- and yttria-stabilized zirconia films on porous ceramics using metal chlorides as precursors. (Tb,Y)-ZrO2 solid solutions have a fluorite-type structure and have a high mixed conductivity and oxygen semipermeability.


Journal of the American Ceramic Society | 1993

Pore Narrowing and Formation of Ultrathin Yttria-Stabilized Zirconia Layers in Ceramic Membranes by Chemical Vapor Deposition/Electrochemical Vapor Deposition

G.Z. Cao; H.W. Brinkman; J. Meijerink; Karel Jan de Vries; A.J. Burggraaf


Journal De Physique Iv | 1993

On the kinetics of modified CVD in porous ceramics

G.Z. Cao; H.W. Brinkman; J. Meijerink; K.J. de Vries; A.J. Burggraaf


Journal De Physique Iv | 1993

Kinetics of the EVD process for growing thin zirconia/yttria films on porous alumina substrates

H.W. Brinkman; G.Z. Cao; J. Meijerink; K.J. de Vries; A.J. Burggraaf


Proceedings 5th International Conference on the Science and Technology of Zirconia | 1992

Mixed conduction and oxygen permeation of ZrO@#2@#-Tb@#2@#O@#3.5@#-Y@#2@#O@#3@# solid solutions

G.Z. Cao; X.Q. Lin; H.W. Brinkman; Karel Jan de Vries; A.J. Burggraaf


Proceedings 5th International Conference on the Science and Technology of Zirconia | 1992

Morphology of very thin layers made by electro-chemical vapour deposition at low temperatures

H.W. Brinkman; G.Z. Cao; J. Meijerink; Karel Jan de Vries; A.J. Burggraaf


Archive | 1994

Kinetics of the EVD process for growing zirconia/yttria films on porous substrates

H.W. Brinkman; G.Z. Cao; J. Meijerink; Karel Jan de Vries; A.J. Burggraaf


Archive | 1993

Preparation of ceramic membranes by modified CVD

G.Z. Cao; H.W. Brinkman; J. Meijerink; K.J. de Vries; A.J. Burggraaf

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Henricus J.M. Bouwmeester

MESA+ Institute for Nanotechnology

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C.S. Chen

University of Science and Technology of China

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