Morphogenesis mechanisms in the hydrothermal growth of lead-free BCZT nanostructured multipods
HANANI, Zouhair
Laboratoire des Matériaux Innovants, Energie et Développement Durable [Marrakech] [IMED-Lab ]
Institut de Chimie de la Matière Condensée de Bordeaux [ICMCB]
Jozef Stefan Institute [Ljubljana] [IJS]
Laboratoire des Matériaux Innovants, Energie et Développement Durable [Marrakech] [IMED-Lab ]
Institut de Chimie de la Matière Condensée de Bordeaux [ICMCB]
Jozef Stefan Institute [Ljubljana] [IJS]
EL-HOUSSAINE, Ablouh
Université Mohammed VI Polytechnique = Mohammed VI Polytechnic University [Ben Guerir] [UM6P]
Université Mohammed VI Polytechnique = Mohammed VI Polytechnic University [Ben Guerir] [UM6P]
MERSELMIZ, Soukaina
Laboratoire des Matériaux Innovants, Energie et Développement Durable [Marrakech] [IMED-Lab ]
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Laboratoire des Matériaux Innovants, Energie et Développement Durable [Marrakech] [IMED-Lab ]
HANANI, Zouhair
Laboratoire des Matériaux Innovants, Energie et Développement Durable [Marrakech] [IMED-Lab ]
Institut de Chimie de la Matière Condensée de Bordeaux [ICMCB]
Jozef Stefan Institute [Ljubljana] [IJS]
Laboratoire des Matériaux Innovants, Energie et Développement Durable [Marrakech] [IMED-Lab ]
Institut de Chimie de la Matière Condensée de Bordeaux [ICMCB]
Jozef Stefan Institute [Ljubljana] [IJS]
EL-HOUSSAINE, Ablouh
Université Mohammed VI Polytechnique = Mohammed VI Polytechnic University [Ben Guerir] [UM6P]
Université Mohammed VI Polytechnique = Mohammed VI Polytechnic University [Ben Guerir] [UM6P]
MERSELMIZ, Soukaina
Laboratoire des Matériaux Innovants, Energie et Développement Durable [Marrakech] [IMED-Lab ]
Laboratoire des Matériaux Innovants, Energie et Développement Durable [Marrakech] [IMED-Lab ]
AMJOUD, M’barek
Laboratoire des Matériaux Innovants, Energie et Développement Durable [Marrakech] [IMED-Lab ]
Laboratoire des Matériaux Innovants, Energie et Développement Durable [Marrakech] [IMED-Lab ]
MEZZANE, Daoud
Laboratoire des Matériaux Innovants, Energie et Développement Durable [Marrakech] [IMED-Lab ]
Laboratoire de Physique de la Matière Condensée - UR UPJV 2081 [LPMC]
Laboratoire des Matériaux Innovants, Energie et Développement Durable [Marrakech] [IMED-Lab ]
Laboratoire de Physique de la Matière Condensée - UR UPJV 2081 [LPMC]
ALIMOUSSA, Abdelhadi
Laboratoire des Matériaux Innovants, Energie et Développement Durable [Marrakech] [IMED-Lab ]
Laboratoire des Matériaux Innovants, Energie et Développement Durable [Marrakech] [IMED-Lab ]
LAHCINI, Mohammed
Laboratoire des Matériaux Innovants, Energie et Développement Durable [Marrakech] [IMED-Lab ]
Laboratoire des Matériaux Innovants, Energie et Développement Durable [Marrakech] [IMED-Lab ]
LUK'YANCHUK, Igor A.
Laboratoire de Physique de la Matière Condensée - UR UPJV 2081 [LPMC]
Department of Building Materials
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Laboratoire de Physique de la Matière Condensée - UR UPJV 2081 [LPMC]
Department of Building Materials
Langue
en
Article de revue
Ce document a été publié dans
CrystEngComm. 2021, vol. 23, n° 30, p. 5249-5256
Royal Society of Chemistry
Résumé en anglais
Due to growing environmental concerns about the toxicity of lead-based piezoelectrics, the replacement of Pb-based materials with homologs with comparable piezoelectric properties but without lead is an emergent task. Since ...Lire la suite >
Due to growing environmental concerns about the toxicity of lead-based piezoelectrics, the replacement of Pb-based materials with homologs with comparable piezoelectric properties but without lead is an emergent task. Since 2009, Ba0.85Ca0.15Zr0.1Ti0.9O3 (BCZT) materials have aroused considerable attention as a replacement due to their excellent dielectric, ferroelectric and piezoelectric properties. Nanostructuring of BCZT can enhance these functionalities even more. Here, templated-growth of BCZT nanostructured multipods with hydrogen zirconate titanate nanowires (HZTO-NWs) was investigated under hydrothermal conditions. The effects of the precursor's concentrations and the hydrothermal reaction time on the morphological formation of BCZT nanostructures were investigated. Besides, composition, structure and phase analysis studies were carried out, and the growth mechanism of BCZT multipods was proposed. It was found that the precursor's concentrations and dwell time in hydrothermal reactions play a critical role in the formation of BCZT multipods, and the desirable BCZT phase was obtained in samples using low barium and calcium concentrations and at a short reaction time. This research has general validity and can be extended to design more complex perovskite oxides.< Réduire
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