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Theoretical Limits of Energy Density in Silicon-Carbon Composite Anode Based Lithium Ion Batteries

机译:硅 - 碳复合阳极基锂离子电池能量密度的理论限制

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Silicon (Si) is under consideration as a potential next-generation anode material for the lithium ion battery (LIB). Experimental reports of up to 40% increase in energy density of Si anode based LIBs (Si-LIBs) have been reported in literature. However, this increase in energy density is achieved when the Si-LIB is allowed to swell (volumetrically expand) more than graphite based LIB (graphite-LIB) and beyond practical limits. The volume expansion of LIB electrodes should be negligible for applications such as automotive or mobile devices. We determine the theoretical bounds of Si composition in a Si-carbon composite (SCC) based anode to maximize the volumetric energy density of a LIB by constraining the external dimensions of the anode during charging. The porosity of the SCC anode is adjusted to accommodate the volume expansion during lithiation. The calculated threshold value of Si was then used to determine the possible volumetric energy densities of LIBs with SCC anode (SCC-LIBs) and the potential improvement over graphite-LIBs. The level of improvement in volumetric and gravimetric energy density of SCC-LIBs with constrained volume is predicted to be less than 10% to ensure the battery has similar power characteristics of graphite-LIBs.
机译:正在考虑硅(Si)作为锂离子电池(Lib)的潜在的下一代阳极材料。文献报告了在文献中报告了基于Si阳极基于Libs(Si-Libs)的能量密度增加40%的实验报告。然而,当允许Si-Lib被允许(大容量膨胀)超过基于石墨(Graphite-lib)并且超出实际限制时,可以实现能量密度的这种增加。对于诸如汽车或移动设备之类的应用,Lib电极的体积膨胀应忽略不计。我们在基于Si-碳复合物(SCC)的阳极中确定Si组合物的理论界,以通过约束充电期间阳极的外部尺寸来最大化LIB的体积能密度。调节SCC阳极的孔隙率以适应锂化期间的体积膨胀。然后使用Si的计算阈值来确定具有SCC阳极(SCC-LIBS)的Libs的可能的体积能量密度和通过石墨Lib的潜在改进。预计具有约束容积的SCC-LIB的体积和重量能量密度的改善水平小于10%,以确保电池具有类似的Graphite-Libs的功率特性。

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