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In situ decoration of CoP/Ti_(3)C_(2)Tx composite as efficient electrocatalyst for Li-oxygen battery 被引量:3
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作者 Xingzi Zheng Mengwei Yuan +2 位作者 Xianqiang Huang Huifeng Li Genban Sun 《Chinese Chemical Letters》 SCIE CAS CSCD 2023年第1期164-168,共5页
Application of Li-oxygen(Li-O_(2)) battery is in urgent need of bifunctional ORR/OER electrocatalyst. A surface-functionalization CoP/Ti_(3)C_(2)Txcomposite was fabricated theoretically, with the optimized electronic ... Application of Li-oxygen(Li-O_(2)) battery is in urgent need of bifunctional ORR/OER electrocatalyst. A surface-functionalization CoP/Ti_(3)C_(2)Txcomposite was fabricated theoretically, with the optimized electronic structure and more active electron, which is beneficial to the electrochemical reaction. The accordion shaped Ti_(3)C_(2)Txis featured with large specific surface area and outstanding electronic conductivity, which is beneficial for the adequate exposure of active sites and the deposition of Li2O2. Transition metal phosphides provide more electrocatalytic active sites and present good electrocatalytic effect. The CoP/Ti_(3)C_(2)Txcomposite served as the electrocatalyst of Li-O_(2)battery reaches a high specific discharge capacity of 17,413 m Ah/g at 100 m A/g and the lower overpotential of 1.25 V, superior to those of the CoP and Ti_(3)C_(2)Txindividually. The composite of transition metal phosphides and MXene are applied in Li-O_(2)battery, not only demonstrating higher cycling stability of the prepared CoP/Ti_(3)C_(2)Txcomposite, but pointing out the direction for their electrochemical performance improvement. 展开更多
关键词 MXene Transition metal phosphide oxygen adsorption ability li-oxygen battery ELECTROCATALYST
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Coupling interface constructions of hollow Co-Mo mixed multiple oxidation states heterostructure for high-performance aprotic Li-O_(2) battery
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作者 Xingzi Zheng Mengwei Yuan +3 位作者 Jingshen Xu Zihan Li Caiyun Nan Genban Sun 《Nano Research》 SCIE EI CSCD 2024年第5期4100-4107,共8页
Constructing interfaces in heterostructures is effective for modulating the electronic properties of electrocatalysts.The hollow CoMoO_(4)-Co_(3)O_(4) heterostructure(HCMCH)was prepared as a bifunctional electrocataly... Constructing interfaces in heterostructures is effective for modulating the electronic properties of electrocatalysts.The hollow CoMoO_(4)-Co_(3)O_(4) heterostructure(HCMCH)was prepared as a bifunctional electrocatalyst for Li-O_(2) battery.The different components in CoMoO_(4)-Co_(3)O_(4) heterostructure presented the efficient coupling and enhanced the electrocatalytic activity for aprotic oxygen reduction reaction(ORR)and oxygen evolution reaction(OER),in which it improved the obviously reduced overpotential of 300 mV(compared with the pure Ketjen black(KB)electrode),enhanced reversibility of 80%capacity retention after 6 full cycles and the superior cyclability of more than 200 cycles with an optimized strategy.The battery performance of the HCMCH was not only associated with the unique hollow structure and rich active sites but also with coupling interface constructions synergetic effects attaching to the improving conductivity and optimized the discharge conversion.These results suggested that this HCMCH electrocatalyst was a promising candidate for the Li-O_(2) battery and it gave a novel insight for high performance electrocatalyst designing. 展开更多
关键词 li-oxygen battery HETEROSTRUCTURE ELECTROCATALYST coupling interface
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Well-defined carbon nanoframes containing bimetal-N-C active sites as efficient bi-functional electrocatalysts for Li-Ch batterie 被引量:3
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作者 Tie Liu Leidanyang Wang +1 位作者 Tao Huang Aishui Yu 《Nano Research》 SCIE EI CAS CSCD 2019年第3期517-523,共7页
Design and fabrication of framework-structured porous precursors have been regarded as a prospective albeit challenging strategy to obtain bimetal/NC-enriched bifunctional elecrocatalysts. In this work, an effective b... Design and fabrication of framework-structured porous precursors have been regarded as a prospective albeit challenging strategy to obtain bimetal/NC-enriched bifunctional elecrocatalysts. In this work, an effective bottom-up approach involving solution-based self-assembly and a post-annealing process was developed to confine (Co, Zn)-N-C active sites into N-enriched graphitic carbon nanocages. This novel architecture containing N-doped-C stabilized bimetallic nanoparticles derived from ZIF precursors was well-studied by a series of characterization and analysis techniques. Details were given that these well-dispersed (Co, Zn) nanoparticles were encapsulated into the pyridinic-N-dominated graphitic carbon nanocage with a total metal loading of approximately 7.4 at.%. This favorable hierarchical structure not only enhances the electron conductivity, but also owns a sufficient BET surface area facilitating the gas-liquid-solid triphase reaction and producing more space to store discharge products. Importantly, results infer that the interesting nanoframes manifests a satisfying ORR/OER activity and enhanced cell performance whether liquid or solid-state electrolytes are used. As such, our work rationalizes that this type of cage-shaped bimetal-N-C material is promising for high-performance Li-O2 batteries. 展开更多
关键词 BIFUNCTIONAL ELECTROCATALYST li-oxygen battery NITROGEN-DOPED CARBON zinc-cobalt
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放电态Li-AgVO_3一次电池作为可充Li-O_2电池再利用研究 被引量:1
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作者 李冉 卢艳莹 +3 位作者 雷凯翔 李福军 程方益 陈军 《化学学报》 SCIE CAS CSCD 北大核心 2017年第2期199-205,共7页
废弃电池中活性材料再利用是目前处理废弃的一次电池既节约又节能的方法.基于此,本工作详细地研究了废弃的Li-AgVO_3一次电池作为可充Li-O_2电池的再利用.结果显示放电后的Li-AgVO_3电池可以作为Li-O_2电池被再次激活.在Li-AgVO_3电池... 废弃电池中活性材料再利用是目前处理废弃的一次电池既节约又节能的方法.基于此,本工作详细地研究了废弃的Li-AgVO_3一次电池作为可充Li-O_2电池的再利用.结果显示放电后的Li-AgVO_3电池可以作为Li-O_2电池被再次激活.在Li-AgVO_3电池放电过程中,原位生长在钒氧化物电极上的银纳米颗粒可以进一步有效地催化Li-O_2电池中氧还原和氧析出反应(ORR/OER).通过控制Li-AgVO_3一次电池的放电深度,可以得到具有不同尺寸和分布状态的Ag纳米颗粒的银/钒氧化物复合电极.将这些不同放电状态的复合电极作为Li-O_2电池的空气正极并测试了它们的电化学性能.电化学测试结果表明,放电到2.3 V的复合电极电化学性能最优,比容量高达9000 mAh·g_(carbon)^(-1),充放电过电位最低,可稳定循环95周.其优异电化学性能归因于银纳米颗粒合适的尺寸和均匀的分布,明显提高了电极导电能力并为ORR/OER电催化反应提供了丰富的活性位点. 展开更多
关键词 钒酸银 银纳米颗粒 锂一次电池 锂氧电池 循环利用 氧还原/氧析出
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