不同硼源对固体合成硼酸铜的影响

IF 0.9 4区 材料科学 Q3 CRYSTALLOGRAPHY
Fatma Tugce Senberber Dumanli, Sibel Kavci Karaagac, A. Kipcak, E. Moroydor Derun
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引用次数: 0

摘要

摘要:在不使用任何改性剂的情况下,采用固相法成功地合成了四方硼酸铜。根据设计的实验流程,优化的反应条件为反应温度950 °C,反应时间240 min,氩气气氛,Cu:B比1:5。估计了硼酸和氧化硼两种硼源可能的反应机理。在这两组中,较低的Cu:B比支持了cu2o4的形成。以硼酸为硼源,可获得较高的反应产率(98 %)和较低的粒度。以氧化硼为硼源,在形貌分析中观察到微米尺度的圆形颗粒,颗粒形状均匀。在1190、1035、988、945、890、695、631、540和479 cm−1波段处观察到特异的FT-IR峰。实验结果突出了固体材料在硼酸铜合成中的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of different boron sources on the copper borates in solid-state synthesis
Abstract The copper borate of CuB2O4 in tetragonal form was successfully synthesized as a single-phase by using a solid-state method without using any modifying agent. For the designed experimental procedure, the optimized reaction conditions were estimated as a reaction temperature of 950 °C, reaction time of 240 min, argon atmosphere and Cu:B ratio of 1:5. The possible reaction mechanism estimated for both boron sources of boric acid and boron oxide. In both sets, the lower ratios of Cu:B supported CuB2O4 formation. In the use of boric acid as a boron source, higher reaction yield percentages (98 %) and lower particle sizes were determined. The micron-scale rounded particles were observed in morphological analyses and the particles were shaped in homogeneity in the use of boron oxide as a boron source. The specific FT-IR peaks were observed at the band values of 1190, 1035, 988, 945, 890, 695, 631, 540 and 479 cm−1. The experimental results highlighted the probable use of solid-state in the copper borate synthesis.
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来源期刊
CiteScore
2.00
自引率
16.70%
发文量
55
期刊介绍: Zeitschrift für Kristallographie – Crystalline Materials was founded in 1877 by Paul von Groth and is today one of the world’s oldest scientific journals. It offers a place for researchers to present results of their theoretical experimental crystallographic studies. The journal presents significant results on structures and on properties of organic/inorganic substances with crystalline character, periodically ordered, modulated or quasicrystalline on static and dynamic phenomena applying the various methods of diffraction, spectroscopy and microscopy.
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