Результаты исследований: Публикации в книгах, отчётах, сборниках, трудах конференций › статья в сборнике материалов конференции › научная › Рецензирование
Hydrothermal synthesis and study of the properties of the system ZrW2-xMoxO7(OH)2·2H2O (0≤x≤2). / Mariya, Petrushina; Elena, Dedova; Alexander, Gubanov и др.
Physics and Technology of Nanostructured Materials IV (Supplement Book). ред. / Nikolay G. Galkin. Trans Tech Publications Ltd, 2019. стр. 118-123 (Key Engineering Materials; Том 806 KEM).Результаты исследований: Публикации в книгах, отчётах, сборниках, трудах конференций › статья в сборнике материалов конференции › научная › Рецензирование
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TY - GEN
T1 - Hydrothermal synthesis and study of the properties of the system ZrW2-xMoxO7(OH)2·2H2O (0≤x≤2)
AU - Mariya, Petrushina
AU - Elena, Dedova
AU - Alexander, Gubanov
AU - Natalya, Ruban
AU - Anastasya, Kirilovich
AU - Polina, Topchian
AU - Portniagin, Arseniy
PY - 2019/1/1
Y1 - 2019/1/1
N2 - The ZrW2-xMoxO8 (0≤x≤2) system has a unique property - a negative coefficient of thermal expansion (CTE), that is it shrinks when heated. Such materials solve the problem of undesirable thermal expansion of composites in many areas. In contradistinction to ZrW2O8 and ZrMo2O8, this system has anomalously low CTE values [1,2] and adverse phase transition is shifted to a lower temperature, unlikely area for operation [3,4]. At the same time, the fundamental question remains about the mechanism of formation of ZrW2-xMoxO8(0≤x≤2). According to [5,6], pure cubic ZrW2O8 and ZrMo2O8 are obtained by thermal decomposition of the precursor ZrM2O7(OH)2· 2H2O, where (M = Mo, W). However, the structure of the precursor is extremely sensitive to various changes in the synthesis process. To date, there are a number of works devoted to the hydrothermal synthesis of precursors ZrW2-xMoxO7(OH)2·2H2O (0≤x≤2) solid solutions, however, not all formulations were obtained during the hydrothermal reaction. The study of their thermal properties, as well as structural and phase transformations are not fully studied. Within the paper it was first time proposed to obtain full number of nanosized materials by the hydrothermal method and also to study the nature of the thermal expansion of each member of the solid solution. The obtained data will solve many technical problems associated with dimensional nonvariance in the electronic, oil and gas, optical industry, medicine and rocket engineering.
AB - The ZrW2-xMoxO8 (0≤x≤2) system has a unique property - a negative coefficient of thermal expansion (CTE), that is it shrinks when heated. Such materials solve the problem of undesirable thermal expansion of composites in many areas. In contradistinction to ZrW2O8 and ZrMo2O8, this system has anomalously low CTE values [1,2] and adverse phase transition is shifted to a lower temperature, unlikely area for operation [3,4]. At the same time, the fundamental question remains about the mechanism of formation of ZrW2-xMoxO8(0≤x≤2). According to [5,6], pure cubic ZrW2O8 and ZrMo2O8 are obtained by thermal decomposition of the precursor ZrM2O7(OH)2· 2H2O, where (M = Mo, W). However, the structure of the precursor is extremely sensitive to various changes in the synthesis process. To date, there are a number of works devoted to the hydrothermal synthesis of precursors ZrW2-xMoxO7(OH)2·2H2O (0≤x≤2) solid solutions, however, not all formulations were obtained during the hydrothermal reaction. The study of their thermal properties, as well as structural and phase transformations are not fully studied. Within the paper it was first time proposed to obtain full number of nanosized materials by the hydrothermal method and also to study the nature of the thermal expansion of each member of the solid solution. The obtained data will solve many technical problems associated with dimensional nonvariance in the electronic, oil and gas, optical industry, medicine and rocket engineering.
KW - Hydrothermal method
KW - Negative thermal expansion
KW - Phase transition
KW - Solid solution
UR - http://www.scopus.com/inward/record.url?scp=85070992336&partnerID=8YFLogxK
UR - https://www.mendeley.com/catalogue/8298f9cf-351c-3106-ab1b-a579c9cd7de5/
U2 - 10.4028/www.scientific.net/KEM.806.118
DO - 10.4028/www.scientific.net/KEM.806.118
M3 - Conference contribution
AN - SCOPUS:85070992336
SN - 9783035715682
T3 - Key Engineering Materials
SP - 118
EP - 123
BT - Physics and Technology of Nanostructured Materials IV (Supplement Book)
A2 - Galkin, Nikolay G.
PB - Trans Tech Publications Ltd
T2 - 4th Asian School-Conference on Physics and Technology of Nanostructured Materials, ASCO-NANOMAT 2018
Y2 - 23 September 2018 through 28 September 2018
ER -
ID: 21349553