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| Main Authors: | , , , , , , , , , , , , , , , , , , , , , , , , , |
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| Format: | Artículo científico |
| Language: | en |
| Published: |
ACS energy letters
2024
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| Online Access: | https://pubmed.ncbi.nlm.nih.gov/39698339/ |
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| _version_ | 1868266265815023618 |
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| author | Yu, Jing Pinto-Huguet, Ivan Zhang, Chao Yue Zhou, Yingtang Xu, Yaolin Vizintin, Alen Velasco-Vélez, Juan-Jesús Qi, Xueqiang Pan, Xiaobo Oney, Gozde Olgo, Annabel Märker, Katharina M Da Silva, Leonardo Luo, Yufeng Lu, Yan Huang, Chen Härk, Eneli Fleming, Joe Chenevier, Pascale Cabot, Andreu Bai, Yunfei Botifoll, Marc Black, Ashley P An, Qi Amietszajew, Tazdin Arbiol, Jordi |
| author_facet | Yu, Jing Pinto-Huguet, Ivan Zhang, Chao Yue Zhou, Yingtang Xu, Yaolin Vizintin, Alen Velasco-Vélez, Juan-Jesús Qi, Xueqiang Pan, Xiaobo Oney, Gozde Olgo, Annabel Märker, Katharina M Da Silva, Leonardo Luo, Yufeng Lu, Yan Huang, Chen Härk, Eneli Fleming, Joe Chenevier, Pascale Cabot, Andreu Bai, Yunfei Botifoll, Marc Black, Ashley P An, Qi Amietszajew, Tazdin Arbiol, Jordi Yu, Jing Pinto-Huguet, Ivan Zhang, Chao Yue Zhou, Yingtang Xu, Yaolin Vizintin, Alen Velasco-Vélez, Juan-Jesús Qi, Xueqiang Pan, Xiaobo Oney, Gozde Olgo, Annabel Märker, Katharina M Da Silva, Leonardo Luo, Yufeng Lu, Yan Huang, Chen Härk, Eneli Fleming, Joe Chenevier, Pascale Cabot, Andreu Bai, Yunfei Botifoll, Marc Black, Ashley P An, Qi Amietszajew, Tazdin Arbiol, Jordi |
| collection | PubMed - marine biology |
| contents | Mechanistic Insights and Technical Challenges in Sulfur-Based Batteries: A Comprehensive / Monitoring Toolbox. Yu, Jing Pinto-Huguet, Ivan Zhang, Chao Yue Zhou, Yingtang Xu, Yaolin Vizintin, Alen Velasco-Vélez, Juan-Jesús Qi, Xueqiang Pan, Xiaobo Oney, Gozde Olgo, Annabel Märker, Katharina M Da Silva, Leonardo Luo, Yufeng Lu, Yan Huang, Chen Härk, Eneli Fleming, Joe Chenevier, Pascale Cabot, Andreu Bai, Yunfei Botifoll, Marc Black, Ashley P An, Qi Amietszajew, Tazdin Arbiol, Jordi Batteries based on sulfur cathodes offer a promising energy storage solution due to their potential for high performance, cost-effectiveness, and sustainability. However, commercial viability is challenged by issues such as polysulfide migration, volume changes, uneven phase nucleation, limited ion transport, and sluggish sulfur redox kinetics. Addressing these challenges requires insights into the structural, morphological, and chemical evolution of phases, the associated volume changes and internal stresses, and ion and polysulfide diffusion within the battery. Such insights can only be obtained through real-time reaction monitoring within the battery's operational environment, supported by molecular dynamics simulations and advanced artificial intelligence-driven data analysis. This review provides an overview of techniques for real-time tracking of these processes in sulfur-based batteries and explores the integration of simulations with experimental data to provide a holistic understanding of the critical challenges, enabling advancements in their development and commercial adoption. |
| format | Artículo científico |
| id | pubmed_39698339 |
| institution | PubMed |
| language | en |
| publishDate | 2024 |
| publisher | ACS energy letters |
| record_format | pubmed |
| spellingShingle | Mechanistic Insights and Technical Challenges in Sulfur-Based Batteries: A Comprehensive / Monitoring Toolbox. Yu, Jing Pinto-Huguet, Ivan Zhang, Chao Yue Zhou, Yingtang Xu, Yaolin Vizintin, Alen Velasco-Vélez, Juan-Jesús Qi, Xueqiang Pan, Xiaobo Oney, Gozde Olgo, Annabel Märker, Katharina M Da Silva, Leonardo Luo, Yufeng Lu, Yan Huang, Chen Härk, Eneli Fleming, Joe Chenevier, Pascale Cabot, Andreu Bai, Yunfei Botifoll, Marc Black, Ashley P An, Qi Amietszajew, Tazdin Arbiol, Jordi Mechanistic Insights and Technical Challenges in Sulfur-Based Batteries: A Comprehensive / Monitoring Toolbox. Yu, Jing Pinto-Huguet, Ivan Zhang, Chao Yue Zhou, Yingtang Xu, Yaolin Vizintin, Alen Velasco-Vélez, Juan-Jesús Qi, Xueqiang Pan, Xiaobo Oney, Gozde Olgo, Annabel Märker, Katharina M Da Silva, Leonardo Luo, Yufeng Lu, Yan Huang, Chen Härk, Eneli Fleming, Joe Chenevier, Pascale Cabot, Andreu Bai, Yunfei Botifoll, Marc Black, Ashley P An, Qi Amietszajew, Tazdin Arbiol, Jordi Batteries based on sulfur cathodes offer a promising energy storage solution due to their potential for high performance, cost-effectiveness, and sustainability. However, commercial viability is challenged by issues such as polysulfide migration, volume changes, uneven phase nucleation, limited ion transport, and sluggish sulfur redox kinetics. Addressing these challenges requires insights into the structural, morphological, and chemical evolution of phases, the associated volume changes and internal stresses, and ion and polysulfide diffusion within the battery. Such insights can only be obtained through real-time reaction monitoring within the battery's operational environment, supported by molecular dynamics simulations and advanced artificial intelligence-driven data analysis. This review provides an overview of techniques for real-time tracking of these processes in sulfur-based batteries and explores the integration of simulations with experimental data to provide a holistic understanding of the critical challenges, enabling advancements in their development and commercial adoption. |
| title | Mechanistic Insights and Technical Challenges in Sulfur-Based Batteries: A Comprehensive / Monitoring Toolbox. |
| url | https://pubmed.ncbi.nlm.nih.gov/39698339/ |