Karahan B D, Yagsi C, Keles O
Istanbul Medipol University, School of Engineering and Natural Sciences, Civil Engineering Department, Beykoz, Istanbul 34810, Turkey.
Istanbul Technical University, Department of Metallurgical and Materials Engineering, Maslak, Istanbul 34469, Turkey.
J Nanosci Nanotechnol. 2019 Feb 1;19(2):941-949. doi: 10.1166/jnn.2019.16018.
Scientists have been working to replace graphite, the state-of-art anode material, to improve battery performances. In this sense, transitional metals and their oxides become attractive due to their capacities, widespread availabilities, and environmental benignity. In this paper, first in literature, a progressive study has been followed to evaluate the possible uses of pristine, partially oxidized and reduced Mo oxide films (with glucose droplets on top of the oxide layer gives the hybride and the film without glucose droplets on top of the oxide film gives merely reduced Mo oxide film) as anodes in lithium ion batteries. Unlike to conventional studies, herein the oxidation of molybdenum (Mo) atoms is restricted with the surface atoms to benefit the advantages of metallic Mo atoms at the electrode/current collector interface. These Mo atoms which are inactive versus Li and insoluble in copper are expected to create conductive pathway in the oxide (or hybride) films as well as minimize volume changes in cycling. Knowing that carbonaceous materials have been used as efficient additives to improve the electrochemical performance of electrodes, the best performance is achieved when the hybrid molydenbum oxide (C film on top of the reduced molybdenum oxide film as a result of the reduction of the glucose droplet) sample is cycled between 0.005-3.0 V versus Li/Li.
科学家们一直在努力寻找替代目前最先进的阳极材料石墨的物质,以提高电池性能。从这个意义上说,过渡金属及其氧化物因其容量、广泛的可用性和环境友好性而变得具有吸引力。在本文中,首次在文献中进行了一项渐进式研究,以评估原始的、部分氧化和还原的钼氧化物薄膜(在氧化物层顶部有葡萄糖液滴的形成了混合薄膜,而在氧化物薄膜顶部没有葡萄糖液滴的仅形成还原钼氧化物薄膜)作为锂离子电池阳极的可能用途。与传统研究不同的是,本文中钼(Mo)原子的氧化仅限于表面原子,以利用电极/集电器界面处金属Mo原子的优势。这些对锂无活性且不溶于铜的Mo原子有望在氧化物(或混合)薄膜中形成导电通路,并使循环过程中的体积变化最小化。鉴于含碳材料已被用作提高电极电化学性能的有效添加剂,当混合钼氧化物(由于葡萄糖液滴的还原,在还原钼氧化物薄膜顶部形成碳薄膜)样品在相对于Li/Li的0.005 - 3.0 V之间循环时,可实现最佳性能。