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首页> 外文期刊>ACS nano >Operando Raman Spectroscopy and Synchrotron X-ray Diffraction of Lithiation/Delithiation in Silicon Nanoparticle Anodes
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Operando Raman Spectroscopy and Synchrotron X-ray Diffraction of Lithiation/Delithiation in Silicon Nanoparticle Anodes

机译:硅纳米颗粒阳极锂化/脱位的Operando拉曼光谱和同步X射线衍射

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Operando Raman spectroscopy and synchrotron X-ray diffraction were combined to probe the evolution of strain in Li-ion battery anodes made of crystalline silicon nanoparticles. The internal structure of the nanoparticles during two discharge/charge cycles was evaluated by analyzing the intensity and position of Si diffraction peaks and Raman TO-LO phonons. Lithiation/delithiation of the silicon under limited capacity conditions triggers the formation of "crystalline core-amorphous shell" particles, which we evidenced as a stepwise decrease in core size, as well as sequences of compressive/tensile strain due to the stress applied by the shell. In particular, we showed that different sequences occur in the first and the second cycle, due to different lithiation processes. We further evidenced critical experimental conditions for accurate operando Raman spectroscopy measurements due to the different heat conductivity of lithiated and delithiated Si. Values of the stress extracted from both operando XRD and Raman are in excellent agreement. Long-term ex situ measurements confirmed the continuous increase of the internal compressive strain, unfavorable to the Si lithiation and contributing to the capacity fading. Finally, a simple mechanical model was used to estimate the sub-nanometer thickness of the interfacial shell applying the stress on the crystalline core. Our complete operando diagnosis of the strain and stress in SiNPs provides both a detailed scenario of the mechanical consequences of lithiation/delithiation in SiNP and also experimental values that are much needed for the benchmarking of theoretical models and for the further rational design of SiNP-based electrodes.
机译:组合Operando拉曼光谱和同步X射线衍射以探讨由晶体硅纳米颗粒制成的锂离子电池阳极菌株的蒸馏。通过分析Si衍射峰和拉曼至-Lo声子的强度和位置来评估两个放电/电荷循环期间纳米颗粒的内部结构。在有限的容量条件下,硅的锂化/脱发触发了“结晶核心 - 无定形壳”颗粒的形成,其在核心尺寸下逐步降低,以及由于所施加的应力,压缩/拉伸应变序列。贝壳。特别地,由于不同的锂化过程,我们表明在第一和第二循环中发生了不同的序列。我们进一步证明了由于锂电相和脱发Si的不同导热率而准确的操作组合拉曼光谱测量的关键实验条件。从Operando XRD和拉曼提取的压力的值都是非常好的协议。长期出原位测量证实了内部压缩菌株的连续增加,不利于Si锂化并有助于褪色。最后,使用简单的机械模型来估计界面壳的亚纳米厚度施加在结晶芯上的界面壳体的亚纳米厚度。我们完全诊断SINPS中应变和应力的诊断提供了SINP中锂化/脱位的机械后果的详细情况,以及理论模型的基准测试和基于SINP的进一步合理设计的实验值也是如此电极。

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