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Nanometer complexes from explosives

机译:炸药的纳米复合物

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Lithium manganese oxides are of great interest as cathode materials for lithium-ion batteries. We describe here a new combustion method to synthesize lithium manganese oxides directly from lithium nitrate, manganese nitrate, ammonium nitrate and glycol. The resultant LiMn2O4synthesized under the optimum synthesis conditions shows perfect spinel structure and uniform particle size distribution. The combustion products were characterized by scanning electron microscopy. And, powders X-ray diffraction and transmission electron microscopy were used to characterize the products. Lithium manganese oxides with approximately acerose crystal morphology of 100 - 200 nm length with 10 - 15 nm diameters and a variety of morphologies were found. The oxides produced by this cheap method affirmed the validity of combustion synthesis of fine powders. Lithium manganate with a fine structure different from that of the normal spinel is formed after combustion wave treatment due to the addition of ammonium nitrate. It might also provide a cheap large-scale synthesis method. Reagents combustion with the addition of ammonium nitrate is strongly nonequilibrium processes. Free metal atoms are first released with the decomposition of reagents, and then theses metal and oxygen atoms are rearranged, coagulated and finally crystallized into lithium manganate during the expansion of combustion process.
机译:锂锰氧化物作为锂离子电池的正极材料备受关注。我们在这里描述了一种直接从硝酸锂,硝酸锰,硝酸铵和乙二醇合成锂锰氧化物的新燃烧方法。在最佳合成条件下合成的LiMn2O4表现出完美的尖晶石结构和均匀的粒径分布。通过扫描电子显微镜表征燃烧产物。并且,粉末X射线衍射和透射电子显微镜被用来表征产物。发现了具有约100-200 nm长,直径10-15 nm直径的乙酰丙酮晶体形态和多种形态的锂锰氧化物。通过这种廉价的方法生产的氧化物证实了细粉燃烧合成的有效性。由于添加了硝酸铵,经过燃烧波处理后,形成了具有与普通尖晶石不同的精细结构的锰酸锂。它也可能提供廉价的大规模合成方法。添加硝酸铵的试剂燃烧是强烈的非平衡过程。游离金属原子首先随着试剂的分解而释放,然后这些金属和氧原子在燃烧过程的扩展过程中重新排列,凝结并最终结晶为锰酸锂。

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