Abstract
Interfacial polarization model considers large interfacial polarization is key to electrorheological effect. In this Letter, high surface area mesoporous cerium-doped TiO2 electrorheological material is synthesized by using block-copolymer template in order to obtain large interfacial polarization. A very large enhancement in electrorheological activity is found for the first time in this nanoporous material. Its yield stress, over 70 kPa at 4 kV/mm electric field, is 100 times higher that of pure TiO2 and eight times higher that of single-doped TiO2 without mesopores. The large electrorheological improvement is attributed to enhanced interfacial polarization originating from high surface area of nanoporous structure.
Original language | English |
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Pages (from-to) | 393-399 |
Number of pages | 7 |
Journal | Chemical Physics Letters |
Volume | 398 |
Issue number | 4-6 |
DOIs | |
State | Published - 11 Nov 2004 |