Monoclinic β-Li2TiO3 nanocrystalline particles employing novel urea assisted solid state route: Synthesis, characterization and sintering behavior
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作者:
Tripathi, Biranchi M.
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Bhabha Atom Res Ctr, Powder Met Div, Vashi Complex, Navi Mumbai 400705, IndiaBhabha Atom Res Ctr, Powder Met Div, Vashi Complex, Navi Mumbai 400705, India
Tripathi, Biranchi M.
[1
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Mohanty, Trupti
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Bhabha Atom Res Ctr, Powder Met Div, Vashi Complex, Navi Mumbai 400705, IndiaBhabha Atom Res Ctr, Powder Met Div, Vashi Complex, Navi Mumbai 400705, India
Mohanty, Trupti
[1
]
Prakash, Deep
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Bhabha Atom Res Ctr, Powder Met Div, Vashi Complex, Navi Mumbai 400705, IndiaBhabha Atom Res Ctr, Powder Met Div, Vashi Complex, Navi Mumbai 400705, India
Prakash, Deep
[1
]
Tyagi, A. K.
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Bhabha Atom Res Ctr, Div Chem, Bombay 400085, Maharashtra, IndiaBhabha Atom Res Ctr, Powder Met Div, Vashi Complex, Navi Mumbai 400705, India
Tyagi, A. K.
[2
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Sinha, P. K.
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Bhabha Atom Res Ctr, Powder Met Div, Vashi Complex, Navi Mumbai 400705, IndiaBhabha Atom Res Ctr, Powder Met Div, Vashi Complex, Navi Mumbai 400705, India
Sinha, P. K.
[1
]
机构:
[1] Bhabha Atom Res Ctr, Powder Met Div, Vashi Complex, Navi Mumbai 400705, India
[2] Bhabha Atom Res Ctr, Div Chem, Bombay 400085, Maharashtra, India
Pure phase monoclinic nano-crystalline Li2TiO3 powder was synthesized by a novel urea assisted solid state synthesis method using readily available and economical precursors. A single phase and well crystalline Li2TiO3 powder has been obtained at slightly lower temperature (600-700 degrees C) and shorter duration (2 h) as compared to the conventional solid state method. The proposed method has significant advantages in comparison to other viable methods mainly in terms of phase purity, powder properties and sinterability. Analysis of chemical composition using inductively coupled plasma atomic emission spectroscopy (ICP-AES) shows no loss of lithium from Li2TiO3 in the proposed method. The emergence of monoclinic Li2TiO3 phase was confirmed by X-ray diffraction (XRD) pattern of as-synthesized powder. The crystallite size of Li2TiO3 powder was calculated to be in the range of 15-80 nm, which varied as a function of urea composition and temperature. The morphology of as-prepared Li2TiO3 powders was examined by scanning electron microscope (SEM). The effect of urea composition on phase and morphology was investigated so as to delineate the role of urea. Upon sintering at < 1000 degrees C temperature, the Li2TiO3 powder compact attained about 98% of the theoretical density with fine grained (grain size: 2-3 mu m) microstructure. It indicates excellent sinter-ability of Li2TiO3 powder synthesized by the proposed method. The fine grained structure is desirable for better tritium breeding performance of Li2TiO3. Electrochemical impedance spectroscopy at variable temperature showed good electrical properties of Li2TiO3. The proposed method is simple, anticipated to be cost effective and convenient to realise for large scale production of phase pure nanocrystalline and having significantly enhanced sinter ability Li2TiO3 powder. (C) 2017 Elsevier B.V. All rights reserved.