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The thermal decomposition of copper(II) oxalate revisited

机译:重新探讨草酸铜(II)的热分解

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DSC, TG and TG-FT-IR, and XRPD have been used to examine the effects of supposedly inert atmospheres of argon and nitrogen on the mechanism of the thermal decomposition of copper(II) oxalate. The DSC curves in pure argon at 10 degrees C min(-1) show a broad endotherm with onset at about 280 degrees C and maximum at about 295 degrees C. In mixtures of argon and nitrogen, as the proportion of argon gas is decreased, the endothermic character of the decomposition decreases until, when nitrogen is the main component, the decomposition exhibits a complex broad exothermic character. XRPD studies showed that, regardless of the proportions of nitrogen and argon, the DSC residues consisted of mainly copper metal with small amounts of copper(I) oxide (cuprite) and, under some conditions, traces of copper(II) oxide (tenorite). Various explanations for this behaviour are discussed and a possible answer lies in the disproportionation of CO2(g) to form small quantities of O-2(g) or monatomic oxygen. The possibility exists that the exothermicity in nitrogen could be explained by reaction of the nitrogen with atomic oxygen to form N2O(g), but this product could not be detected using TG-FT-IR. (c) 2006 Elsevier B.V. All rights reserved.
机译:DSC,TG和TG-FT-IR以及XRPD已用于检查所谓的氩气和氮气的惰性气氛对草酸铜(II)热分解机理的影响。纯氩在10摄氏度min(-1)时的DSC曲线显示出较宽的吸热峰,在约280摄氏度时开始吸热,在约295摄氏度时发生最大值。在氩和氮的混合物中,随着氩气比例的降低,分解的吸热特性降低,直到当氮为主要成分时,分解表现出复杂的宽放热特性。 XRPD研究表明,无论氮和氩的比例如何,DSC残留物主要由铜金属和少量的氧化铜(亚铜铁矿)组成,在某些条件下,还含有痕量的氧化铜(红铁矿)。 。讨论了这种行为的各种解释,可能的答案在于CO2(g)歧化形成少量O-2(g)或单原子氧。氮的放热可能通过氮与原子氧反应生成N2O(g)来解释,但使用TG-FT-IR无法检测到该产物。 (c)2006 Elsevier B.V.保留所有权利。

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