Vasić Milica M, Milović Miloš, Bajuk-Bogdanović Danica, Petrović Tamara, Vujković Milica J
Faculty of Physical Chemistry, University of Belgrade, Studentski trg 12-16, 11000 Belgrade, Serbia.
Institute of Technical Sciences of SASA, Knez Mihajlova 35/IV, 11000 Belgrade, Serbia.
Nanomaterials (Basel). 2022 Aug 12;12(16):2767. doi: 10.3390/nano12162767.
Vanadium-oxide-based materials exist with various vanadium oxidation states having rich chemistry and ability to form layered structures. These properties make them suitable for different applications, including energy conversion and storage. Magnesium vanadium oxide materials obtained using simple preparation route were studied as potential cathodes for rechargeable aqueous magnesium ion batteries. Structural characterization of the synthesized materials was performed using XRD and vibrational spectroscopy techniques (FTIR and Raman spectroscopy). Electrochemical behavior of the materials, observed by cyclic voltammetry, was further explained by BVS calculations. Sluggish Mg ion kinetics in MgVO was shown as a result of poor electronic and ionic wiring. Complex redox behavior of the studied materials is dependent on phase composition and metal ion inserted/deinserted into/from the material. Among the studied magnesium vanadium oxides, the multiphase oxide systems exhibited better Mg insertion/deinsertion performances than the single-phase ones. Carbon addition was found to be an effective dual strategy for enhancing the charge storage behavior of MgVO.
基于钒氧化物的材料以具有丰富化学性质和形成层状结构能力的各种钒氧化态存在。这些特性使其适用于不同的应用,包括能量转换和存储。研究了通过简单制备路线获得的镁钒氧化物材料作为可充电水系镁离子电池的潜在阴极。使用XRD和振动光谱技术(FTIR和拉曼光谱)对合成材料进行结构表征。通过循环伏安法观察到的材料电化学行为通过BVS计算得到进一步解释。由于电子和离子布线不良,MgVO中Mg离子动力学缓慢。所研究材料的复杂氧化还原行为取决于相组成以及插入/脱插入材料的金属离子。在所研究的镁钒氧化物中,多相氧化物体系表现出比单相氧化物更好的Mg插入/脱插入性能。发现添加碳是增强MgVO电荷存储行为的有效双重策略。