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BORON-BASED LAYERED STRUCTURES FOR ENERGY STORAGE

机译:基于硼的储能层结构

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Graphite is highly conductive, lightweight, stable, inexpensive, and environmentally benign, and is currently the anode material of choice for battery-powered electronic devices as well as first generation Li-ion hybrid electric vehicles. However, the low electronegativity of pure graphite limits both the open circuit voltage and its energy density. It is well-known that B substitution of C in graphite create much high level of electronegativity.Consequently, we investigate here two boron-based, graphitelike compounds with nearly identical lattice structures (Fig. 1), i.e., MgB2 and LiBC.
机译:石墨是高导电,轻质,稳定,廉价,环境良好,并且目前是电池供电的电子设备以及第一代锂离子混合动力电动车的阳极材料。然而,纯石墨的低电负性限制了开路电压及其能量密度。众所周知,C在石墨中的B替代C产生高水平的电负电阻。从这里进行调查两个基于硼的石墨腈,具有几乎相同的晶格结构(图1),即MGB2和LIBC。

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