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Hongtao Zhang
Hongtao Zhang
Verified email at lboro.ac.uk - Homepage
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Year
A Lead‐Free High‐Curie‐Point Ferroelectric Ceramic, CaBi2Nb2O9
H Yan, H Zhang, R Ubic, MJ Reece, J Liu, Z Shen, Z Zhang
Advanced Materials 17 (10), 1261-1265, 2005
3812005
The contribution of electrical conductivity, dielectric permittivity and domain switching in ferroelectric hysteresis loops
H Yan, F Inam, G Viola, H Ning, H Zhang, Q Jiang, TAO Zeng, Z Gao, ...
Journal of Advanced Dielectrics 1 (01), 107-118, 2011
3302011
Thermal depoling of high Curie point Aurivillius phase ferroelectric ceramics
H Yan, H Zhang, MJ Reece, X Dong
Applied Physics Letters 87 (8), 2005
2022005
B-site donor and acceptor doped Aurivillius phase Bi3NbTiO9 ceramics
H Yan, H Zhang, Z Zhang, R Ubic, MJ Reece
Journal of the European Ceramic Society 26 (13), 2785-2792, 2006
1152006
Processing and microstructure characterisation of oxide dispersion strengthened Fe–14Cr–0.4 Ti–0.25 Y2O3 ferritic steels fabricated by spark plasma sintering
H Zhang, Y Huang, H Ning, CA Williams, AJ London, K Dawson, Z Hong, ...
Journal of Nuclear Materials 464, 61-68, 2015
882015
The effect of Nd substitution on the electrical properties of Bi3NbTiO9 Aurivillius phase ceramics
H Zhang, H Yan, MJ Reece
Journal of Applied Physics 106 (4), 2009
592009
Feasibility of using Y2Ti2O7 nanoparticles to fabricate high strength oxide dispersion strengthened Fe–Cr–Al steels
T Liu, L Wang, C Wang, H Shen, H Zhang
Materials & Design 88, 862-870, 2015
482015
The grain size effect on the properties of Aurivillius phase Bi3. 15Nd0. 85Ti3O12 ferroelectric ceramics
H Zhang, H Yan, H Ning, MJ Reece, M Eriksson, Z Shen, Y Kan, P Wang
Nanotechnology 20 (38), 385708, 2009
482009
Effect of grain size on domain structures, dielectric and thermal depoling of Nd-substituted bismuth titanate ceramics
G Viola, K Boon Chong, M Eriksson, Z Shen, J Zeng, Q Yin, Y Kan, ...
Applied Physics Letters 103 (18), 2013
442013
Microstructure and electrical properties of Aurivillius phase (CaBi2Nb2O9) 1− x (BaBi2Nb2O9) x solid solution
H Zhang, H Yan, MJ Reece
Journal of Applied Physics 108 (1), 2010
402010
Facile synthesis of CoNi2S4/Co9S8 composites as advanced electrode materials for supercapacitors
F Zhao, W Huang, H Zhang, D Zhou
Applied Surface Science 426, 1206-1212, 2017
352017
Orientation dependence of dielectric and relaxor behaviour in Aurivillius phase BaBi2Nb2O9 ceramics prepared by spark plasma sintering
H Yan, H Zhang, R Ubic, M Reece, J Liu, Z Shen
Journal of Materials Science: Materials in Electronics 17, 657-661, 2006
342006
Textured high Curie point piezoelectric ceramics prepared by spark plasma sintering
HX Yan, HP Ning, HT Zhang, MJ Reece
Advances in Applied Ceramics 109 (3), 139-142, 2010
322010
A multifunctional hydrogel fabricated via ultra-fast polymerization by graphene oxide-adsorbed liquid metal nanodroplets
Y Su, J Zhao, W Zhan, H Yuan, L Wu, G Sui, H Zhang
Chemical Engineering Journal 435, 135018, 2022
302022
The effect of texture on the properties of Bi3. 15Nd0. 85Ti3O12 ceramics prepared by spark plasma sintering
H Zhang, H Yan, X Zhang, MJ Reece, J Liu, Z Shen, Y Kan, P Wang
Materials Science and Engineering: A 475 (1-2), 92-95, 2008
302008
High temperature lead-free relaxor ferroelectric: Intergrowth Aurivillius phase BaBi2Nb2O9–Bi4Ti3O12 ceramics
H Zhang, H Yan, MJ Reece
Journal of Applied Physics 107 (10), 2010
292010
Relaxor ferroelectric and photocatalytic properties of BaBi4Ti4O15
W Qi, Y Wang, J Wu, Z Hu, C Jia, H Zhang
Advances in Applied Ceramics 118 (7), 418-424, 2019
262019
Current understanding and applications of the cold sintering process
T Yu, J Cheng, L Li, B Sun, X Bao, H Zhang
Frontiers of Chemical Science and Engineering 13, 654-664, 2019
252019
An in situ powder neutron diffraction study of nano-precipitate formation during processing of oxide-dispersion-strengthened ferritic steels
H Zhang, MJ Gorley, KB Chong, ME Fitzpatrick, SG Roberts, PS Grant
Journal of alloys and compounds 582, 769-773, 2014
252014
Flexible reduced graphene oxide/polyacrylonitrile dielectric nanocomposite films for high-temperature electronics applications
Y Su, W Zhang, J Lan, G Sui, H Zhang, X Yang
ACS Applied Nano Materials 3 (7), 7005-7015, 2020
232020
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