快速离子传输动力学下的均匀金属钾沉积:多孔碳纳米管/金属有机框架复合宿主

IF 8.1 2区 工程技术 Q1 CHEMISTRY, PHYSICAL
Yue Chen , Zhaomeng Liu , Yue Lu , Xuan-Wen Gao , Jun-Long Zhou , Xuan-Chen Wang , Qin-Fen Gu , Wen-Bin Luo
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引用次数: 0

摘要

金属钾电池(KMB)因其惊人的比容量、低氧化还原电位和丰富的钾元素而成为下一代高效储能技术的有利候选材料。然而,枝晶生长和相当大的体积膨胀等挑战阻碍了其商业化应用。在此,我们开发了一种具有多孔金属有机框架和碳纳米管的轻质自支撑柔性三维(3D)复合宿主(CNT@ZIF-8)。CNT@ZIF-8 复合宿主的独特设计提供了大量亲钾的 N/Zn 活性核酸化位点、广泛的比表面积和多孔结构。这些特点在管理 K 运输动态、促进 K+ 预存储和预分布方面发挥了关键作用。得益于浓度极化的缩小和均匀成核,一种无树枝状突起的 K 金属阳极得以构建。K@CNT@ZIF-8 阳极具有出色的耐久性,可在 0.35 mA cm-2 和 0.35 mAh-cm-2 条件下工作 3200 小时,同时还能在 1.0 mA cm-2 和 1.0 mAh-cm-2 条件下稳定工作 650 小时。此外,PTCDA||K@CNT@ZIF-8 变体的完整电池显示出更高的循环稳定性(1000 次循环后,5 C 时为 88 mAh g-1)和速率性能(20 C 时为 98 mAh g-1)。这些结果凸显了 CNT@ZIF-8 在促进能量存储实际应用方面的巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Uniform potassium metal deposition under fast ion transportation kinetic: Porous carbon nanotube/metal–organic frameworks composite host

Potassium Metal Batteries (KMBs) are emerging as favorable candidates for next-generation high-efficiency energy storage technologies, due to their impressive specific capacity, low redox potential, and the abundance of K. Nevertheless, challenges such as dendrite growth and considerable volume expansion have been hindering in their commercial utilization. Herein, a lightweight and self-supporting flexible three-dimensional (3D) composite host with porous metal–organic frameworks and carbon-nanotube (CNT@ZIF-8) is developed. The unique design of CNT@ZIF-8 composite host offers a multitude of potassiophilic N/Zn active nuleation sites, extensive surface area, and a porous structure. These features play a pivotal role in the management of K transport dynamics, facilitating K+ prestoring and predistribution. Benefiting from the narrowed concentration polarization and uniform nucleation, a dendrite-free K metal anode is constructed. The K@CNT@ZIF-8 anode demonstrates a remarkable durability, operating for 3200 h under 0.35 mA cm−2 and 0.35 mAh·cm−2 conditions, while also maintaining stability over 650 h at 1.0 mA cm−2 and 1.0 mAh·cm−2. Additionally, the full cell of PTCDA||K@CNT@ZIF-8 variant exhibits a boosted cycling stability (88 mAh g−1 at 5 C after 1000 cycles) and rate performance (98 mAh g−1 at 20 C). The results underscore the immense potential of CNT@ZIF-8 in facilitating practical applications for energy storage.

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来源期刊
Journal of Power Sources
Journal of Power Sources 工程技术-电化学
CiteScore
16.40
自引率
6.50%
发文量
1249
审稿时长
36 days
期刊介绍: The Journal of Power Sources is a publication catering to researchers and technologists interested in various aspects of the science, technology, and applications of electrochemical power sources. It covers original research and reviews on primary and secondary batteries, fuel cells, supercapacitors, and photo-electrochemical cells. Topics considered include the research, development and applications of nanomaterials and novel componentry for these devices. Examples of applications of these electrochemical power sources include: • Portable electronics • Electric and Hybrid Electric Vehicles • Uninterruptible Power Supply (UPS) systems • Storage of renewable energy • Satellites and deep space probes • Boats and ships, drones and aircrafts • Wearable energy storage systems
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