2018
DOI: 10.1016/j.ceramint.2017.12.236
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A review: Conventional and supercritical hydro/solvothermal synthesis of ultrafine particles as cathode in lithium battery

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Cited by 54 publications
(14 citation statements)
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“…This solvent is usually not restricted to water and involves other polar or nonpolar solvents (benzene) and in that case, this process is known as the solvothermal synthesis. In addition, the cation precipitates in polymeric hydroxide form and thus these hydroxides dehydrate and speed up the formation of metal oxide crystal structure [49,50].…”
Section: Hydrothermal and Solvothermal Methodsmentioning
confidence: 99%
“…This solvent is usually not restricted to water and involves other polar or nonpolar solvents (benzene) and in that case, this process is known as the solvothermal synthesis. In addition, the cation precipitates in polymeric hydroxide form and thus these hydroxides dehydrate and speed up the formation of metal oxide crystal structure [49,50].…”
Section: Hydrothermal and Solvothermal Methodsmentioning
confidence: 99%
“…Among various applications of GC, great advantages derive from the employment of water and other green solvents in chemical reactions such as aqueous catalysis [ 34 , 35 , 36 ], of supercritical fluids (i.e., supercritical CO 2 ) [ 37 , 38 ], ionic liquids (ILs) [ 39 , 40 , 41 ], deep eutectic solvents (DES) [ 42 , 43 , 44 ] and fluorous media [ 45 ]. Other green approaches are microwave-assisted and ultrasound-assisted processes [ 46 , 47 , 48 ], hydro/solvo thermal reactions [ 49 , 50 ], magnetic field-assisted synthesis [ 51 ], mechanochemistry [ 52 ], and UV irradiation [ 53 , 54 ]. All these approaches and the evolution of GC have been accurately reviewed [ 1 , 55 , 56 , 57 , 58 , 59 , 60 , 61 ], highlighting that over the last 20 years, the principles of green chemistry have strengthened the environmental sustainability of chemical processes.…”
Section: Green Chemistrymentioning
confidence: 99%
“…In the syntheses, a relatively high temperature (100-1000 • C) and high pressure (1-100 MPa) reaction environment is created through heating. The regulation of the synthesized material properties can frequently be performed by changing the synthesis parameters [90,91]. The hydrothermal/solvothermal approaches also allow the fabrication of GQDs-based nanocomposites in a one-step procedure, in which the GQDs precursor and the other material to be combined with are reacted together in the autoclave.…”
Section: Hydrothermal/solvothermal Synthesismentioning
confidence: 99%