Theoretical Study on Graphite and Lithium Metal as Anode Materials for Next-Generation Rechargeable Batteries (下一代可充電電池中石墨與鋰金屬作為陽極材料的理論研究)
Yoon, Gabin
相關主題
商品描述
This thesis describes in-depth theoretical efforts to understand the reaction mechanism of graphite and lithium metal as anodes for next-generation rechargeable batteries. The first part deals with Na intercalation chemistry in graphite, whose understanding is crucial for utilizing graphite as an anode for Na-ion batteries. The author demonstrates that Na ion intercalation in graphite is thermodynamically unstable because of the unfavorable Na-graphene interaction. To address this issue, the inclusion of screening moieties, such as solvents, is suggested and proven to enable reversible Na-solvent cointercalation in graphite. Furthermore, the author provides the correlation between the intercalation behavior and the properties of solvents, suggesting a general strategy to tailor the electrochemical intercalation chemistry. The second part addresses the Li dendrite growth issue, which is preventing practical application of Li metal anodes. A continuum mechanics study considering various experimental conditions reveals the origins of irregular growth of Li metal. The findings provide crucial clues for developing effective counter strategies to control the Li metal growth, which will advance the application of high-energy-density Li metal anodes.
商品描述(中文翻譯)
本論文深入探討了石墨和鋰金屬作為下一代可充電電池陽極的反應機制。第一部分涉及石墨中的鈉插層化學,其理解對於將石墨用作鈉離子電池的陽極至關重要。作者證明,鈉離子在石墨中的插層熱力學上是不穩定的,因為鈉與石墨烯之間的相互作用不利。為了解決這個問題,建議並證明了加入屏蔽基團(如溶劑)可以實現石墨中的可逆鈉-溶劑共插層。此外,作者提供了插層行為與溶劑性質之間的關聯,提出了一種調整電化學插層化學的一般策略。第二部分則針對鋰樹枝晶的生長問題,這是阻礙鋰金屬陽極實際應用的主要原因。一項考慮各種實驗條件的連續介質力學研究揭示了鋰金屬不規則生長的根源。這些發現為開發有效的對策以控制鋰金屬的生長提供了關鍵線索,這將促進高能量密度鋰金屬陽極的應用。
作者簡介
Dr. Gabin Yoon received a B.Sc. degree (2013) and Ph.D. degree (2019) in materials science and engineering from Seoul National University.
His research interest lies in the theoretical study of electrode materials for Li and Na rechargeable batteries using density functional theory and continuum mechanics.
作者簡介(中文翻譯)
Dr. Gabin Yoon 於 2013 年獲得首爾國立大學材料科學與工程的學士學位,並於 2019 年獲得博士學位。他的研究興趣在於利用密度泛函理論和連續介質力學對鋰和鈉可充電電池的電極材料進行理論研究。