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Application of sol-gel method in the synthesis of gallium(III)-oxide

机译:溶胶-凝胶法在氧化镓(III)合成中的应用

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Precipitations by hydrolysis of gallium(III)-isopropoxide and from aqueous GaCl_3 solution by addition of aqueous tetramethylammonium hydroxide (TMAH) solution were utilized to obtain gallium(HI)-oxide precursors. The precursors thus formed and the samples obtained upon heating these precursors at high temperatures were analysed by XRD. FT-IR and TEM. Amorphous phase (dominant) and nanosized alpha-GaOOH particles (several nanometers in size) were obtained by addition of hot water and TMAH solution to the solution of gallium(III)-isopropoxide dissolved in 2-propanol. A completely amorphous precipitate was obtained by hydrolysis of gallium(III)-isopropoxide with pure water at room temperature, and upon heating this precipitate at 500 deg C the nanosized beta-Ga_2O_3 particles (size approx 10 to 20 nm) were obtained. On the other hand, alpha-GaOOH particles, as a single phase, were obtained by precipitation from aqueous GaCl_3 solution with addition of aqueous TMAH solution. These a-GaOOH particles transformed at 500 deg C to alpha-Ga_2O_3 as a single phase. Upon heating at 900 deg C, in all cases only beta-Ga_2O_3 was detected. The size and morphology of the particles in the samples investigated depended on the starting chemicals and the conditions of the experiment. Differences in the mechanism of the precipitation by hydrolysis of gallium(III)-isopropoxide or the precipitation from aqueous solution of GaCl_3 by addition of strong organic alkali (TMAH) were suggested.
机译:通过水解异丙醇镓(III)和通过加入氢氧化四甲基铵水溶液(TMAH)从GaCl_3水溶液中进行沉淀,得到氧化镓(HI)前体。通过XRD分析由此形成的前体和在高温下加热这些前体而获得的样品。 FT-IR和TEM。通过将热水和TMAH溶液添加到溶于2-丙醇的异丙醇镓(III)溶液中,可以得到非晶相(主要)和纳米级的α-GaOOH颗粒(尺寸为几纳米)。通过在室温下用纯水水解异丙醇镓(III),得到完全无定形的沉淀物,并在500℃加热该沉淀物后,得到纳米级的β-Ga_2O_3颗粒(尺寸约为10至20 nm)。另一方面,通过添加GaTM_3水溶液从GaCl_3水溶液中沉淀获得α-GaOOH颗粒作为单相。这些α-GaOOH颗粒在500℃下转化为单相的α-Ga_2O_3。在900℃下加热时,在所有情况下仅检测到β-Ga_2O_3。所研究样品中颗粒的大小和形态取决于起始化学物质和实验条件。有人建议通过异丙醇镓(III)的水解沉淀或通过加入强有机碱(TMAH)从GaCl_3水溶液中沉淀的机理不同。

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