二次金属空气电池中氧析出/氧还原电催化过程的阴离子调控机制研究

批准号:
21905167
项目类别:
青年科学基金项目
资助金额:
25.0 万元
负责人:
王斌
依托单位:
学科分类:
B0905.电能源化学
结题年份:
2022
批准年份:
2019
项目状态:
已结题
项目参与者:
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中文摘要
二次金属空气电池能量密度高、成本低且环境友好。该电池体系的开发,有望实现我国下一代电动设备的弯道超车。然而,受制于正极氧析出/氧还原反应的氧电催化过程中,不同含氧中间体吸附能之间的比例限制关系,单纯调变过渡金属阳离子,难以充分优化氧电催化行为。配位阴离子性质的调控,会影响阳离子活性位d轨道的分裂及电子的分布状态,对于氧电催化过程至关重要,但尚处探索初期,缺乏清晰的机制加以指导。. 针对上述瓶颈问题,本项目拟围绕阴离子调控过渡金属高能dγ及低能dξ轨道电子分布对其氧析出/氧还原电催化行为的影响这一关键科学问题展开。通过对过渡金属化合物中阴离子性质的可控调变、阴离子调控下金属高能dγ及低能dξ轨道电子分布情况的表征分析,并关联其电化学行为,揭示二次金属空气电池中氧析出/氧还原电催化过程的阴离子调控机制。为氧电催化活性位的设计及高性能、高安全性二次金属空气电池的构筑提供理论依据。
英文摘要
Electrically rechargeable metal-air batteries demonstrate high energy density, low cost, and environmental friendliness, of which development makes curve-road overtaking entirely possible in next-generation energy storage systems for portable devices and electronic vehicles. Nevertheless, due to the existing of scaling relationships among the oxygen-containing intermediates, the catalytic activity of bi-functional oxygen evolution reaction (OER) and oxygen reduction reaction (ORR) is limited and is difficult to be prominently improved with only cation regulation in transition metal compounds. Anion regulation of active sites is of great significance for the construction of favorable electronic structures, while it is still in infancy stages and lacks investigations of the underlying mechanism...With the aim of solving the bottleneck problem, this project focuses on a critical scientific issue of the influence of anion regulation on the electron occupancy in high energy anti-bonding dγ orbits and low energy dξ orbits of cooperated transition metal cations, which plays a predominant role in OER/ORR electrocatalysis. Through controllably regulating anion properties, probing the electron filling in cationic dγ and dξ orbits, and investigating the relationship between the regulated electron distribution in different energy-level d orbits of cation active sites and the OER/ORR electrocatalytic performance, the anion regulation mechanism of oxygen electrocatalysis is built for electrically rechargeable metal-air batteries. The investigation of the project can provide new insights on the design of favorable electronic structures for bi-functional electrocatalysis and the development of high-performance rechargeable metal-air batteries.
本项目以高性能二次金属空气电池需求为背景,针对其正极氧析出/氧还原反应催化位点阴离子调控机制缺乏认识的现状,围绕阴离子调控过渡金属电子结构对氧析出/氧还原电催化行为的影响这一关键科学问题展开。对过渡金属化合物中阴离子性质的可控调变、阴离子调控下阳离子活性位点电子分布情况,以及对电化学催化行为的影响进行研究,用以揭示二次金属空气电池中氧析出/氧还原电催化过程的阴离子调控机制。本项目按照预设计划研究内容展开,实现了过渡金属阳离子位点的电子结构可控调变、并且关联电化学行为,探明了二次金属空气电池中氧析出/氧还原电催化过程的阴离子调控机制,为高性能、高安全性二次金属空气电池的构筑提供了理论支撑。
期刊论文列表
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专利列表
Cobalt porphyrins supported on carbon nanotubes as model catalysts of metal-N4/C sites for oxygen electrocatalysis
碳纳米管负载钴卟啉作为氧电催化金属-N4/C位点的模型催化剂
DOI:10.1016/j.jechem.2020.05.015
发表时间:2021
期刊:Journal of Energy Chemistry
影响因子:13.1
作者:Haonan Qin;Yanzhi Wang;Bin Wang;Xiaoguang Duan;Haitao Lei;Xuepeng Zhang;Haoquan Zheng;Wei Zhang;Rui Cao
通讯作者:Rui Cao
Inherent mass transfer engineering of a Co, N co-doped carbon material towards oxygen reduction reaction
Co、N共掺杂碳材料对氧还原反应的固有传质工程
DOI:10.1016/j.jechem.2020.10.028
发表时间:2021-07
期刊:Journal of Energy Chemistry
影响因子:13.1
作者:Yanzhi Wang;Bin Wang;Haitao Yuan;Zuozhong Liang;Zhehao Huang;Yuye Zhou;Wei Zhang;Haoquan Zheng;Rui Cao
通讯作者:Rui Cao
A Hybrid Assembly with Nickel Poly‐Pyridine Polymer on CdS Quantum Dots for Photo‐Reducing CO 2 into Syngas with Controlled H 2 /CO Ratios
镍聚吡啶聚合物在 CdS 量子点上的混合组装,用于光催化将 CO 2 还原为合成气并控制 H 2 /CO 比率
DOI:10.1002/cssc.202200200
发表时间:2022
期刊:ChemSusChem
影响因子:8.4
作者:Hong‐Yan Wang;Wei‐Hua Xie;Dong‐Dong Wei;Rong Hu;Na Wang;Kai Chang;Shuang‐Lei Lei;Bin Wang;Rui Cao
通讯作者:Rui Cao
Enhanced lithium storage performance guided by intricate-cavity hollow cobalt phosphide
由复杂空腔空心磷化钴引导增强的锂存储性能
DOI:10.1016/j.apsusc.2021.150395
发表时间:2021-06
期刊:Applied Surface Science
影响因子:6.7
作者:Fanfan Shang;Wei Yu;Ranting Shi;Shanhong Wan;Hang Zhang;Bin Wang;Rui Cao
通讯作者:Rui Cao
Kinetic-enhanced carbon fiber for rechargeable zinc-air batteries
用于可充电锌空气电池的动能增强碳纤维
DOI:10.1063/5.0135513
发表时间:2023
期刊:The Journal of Chemical Physics
影响因子:--
作者:Yang Li;Bin Wang;Hao-Fan Wang;Cheng Tang
通讯作者:Cheng Tang
渭河盆地卤阳湖晚新近纪沉积序列记录的东亚季风演变
- 批准号:42072208
- 项目类别:面上项目
- 资助金额:60万元
- 批准年份:2020
- 负责人:王斌
- 依托单位:
渭河盆地南缘新生界:年代厘定与物源分析
- 批准号:41602182
- 项目类别:青年科学基金项目
- 资助金额:23.0万元
- 批准年份:2016
- 负责人:王斌
- 依托单位:
国内基金
海外基金
