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首页> 外文期刊>ACS applied materials & interfaces >Unusual Cu-Co/GO Composite with Special High Organic Content Synthesized by an in Situ Self-Assembly Approach: Pyrolysis and Catalytic Decomposition on Energetic Materials
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Unusual Cu-Co/GO Composite with Special High Organic Content Synthesized by an in Situ Self-Assembly Approach: Pyrolysis and Catalytic Decomposition on Energetic Materials

机译:不寻常的Cu-Co /去复合材料,具有特殊的高有机含量通过原位自组装方法合成:热解和能量材料上的催化分解

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An interesting Cu-Co/GO composite with special high organic content was accidentally fabricated for the first time via a one-pot solvothermal method in the mixed solvent of isopropanol and glycerol. The Cu-Co/GO composite was calcined separately in three different atmospheres (air, nitrogen, and argon) and further investigated by a series of characterization techniques. The results indicate that the spinel phase nano-CuCo2O4 composite, nanometal oxides (CuO and CoO), and nanometal mixture of Cu and Co were unexpectedly formed after calcination in air, N-2, and Ar atmospheres, respectively, and the possible reaction mechanism was discussed. The specific mass losses of the Cu-Co/GO composite calcined in air, N-2, and Ar atmospheres were 28.14 %, 21.68 %, and 23.76 %, respectively. The catalytic decomposition performances of the as-prepared samples for cyclotrimethylenetrinitramine (RDX) and the mixture of nitrocellulose (NC) and RDX (NC + RDX) were investigated and compared via DSC method, and the results demonstrate that Cu-Co/GO composites obviously decrease the thermal decomposition temperature of RDX from 242.3 to 236.5 (before calcination), 238.6 (air), 235.8 (N-2), and 228.6 degrees C (Ar), respectively. Cu-Co/GO(Ar) composite exhibits the best catalytic decomposition performance among all samples, which makes the decomposition temperature of RDX and NC + RDX decrease by 13.7 and 4.9 degrees C and the apparent activation energy of decomposition for RDX decrease by 110.1 kJ/mol. The enhanced catalytic performance of Cu-Co/GO(Ar) composite could be attributed to the smaller particle size, better crystallinity, and specific well-dispersed metal atoms, whereas the Cu-Co/GO(air) composite after air calcination presents a bad catalytic performance due to the removal of GO.
机译:通过在异丙醇和甘油的混合溶剂中,首次在异丙醇和甘油的混合溶剂中首次意外地制造具有特殊高有机含量的有趣的Cu-Co /去复合材料。 Cu-Co / Go复合材料分别在三种不同的大气(空气,氮气和氩气)中煅烧,并通过一系列表征技术进一步研究。结果表明,在空气,N-2和Ar气氛中煅烧后,尖晶石相纳米 - Cuco2O4复合材料,纳米氧化物(CuO和COO)和Cu和Co的纳米混合物在煅烧后,和可能的反应机理讨论过。在空气,N-2和Ar气氛中煅烧的Cu-Co /去复合材料的特异性损失分别为28.14%,21.68%和23.76%。研究和硝酸纤维素四丁烯腈(RDX)和硝酸纤维素(NC)和RDX(NC + RDX)的催化分解性能和硝酸纤维素(NC)和RDX(NC + RDX)的混合物,结果表明CU-CO / GO复合材料明显将RDX的热分解温度从242.3降至242.3至236.5(煅烧前),238.6(空气),235.8(N-2)和228.6℃(AR)。 Cu-Co / Go(Ar)复合材料在所有样品中表现出最佳的催化分解性能,使RDX和NC + RDX的分解温度降低13.7和4.9c,并且RDX分解的表观激活能量降低110.1 kJ / mol。 Cu-Co / Go(Ar)复合材料的增强催化性能可归因于粒径较小,结晶度和特异性井分散的金属原子,而在空气煅烧后的Cu-Co / Go(空气)复合材料呈现a由于去除而导致的催化性能不良。

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