首页|构筑高效耐腐蚀的碳铠甲层包覆Co9Se8电催化剂用于海水基锌空气电池

构筑高效耐腐蚀的碳铠甲层包覆Co9Se8电催化剂用于海水基锌空气电池

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得益于较高的理论能量密度、环境友好性和丰富的海水储量,海水基锌-空气电池(S-ZABs)被认为是一种极具应用前景的储能和能源转换装置,是解决能源短缺和环境污染问题的能源装置之一.然而对于S-ZABs而言,构筑在海水中具有高耐氯离子腐蚀性与高性能的阴极氧还原反应电催化剂仍然具有挑战性.因此,我们通过高温硒化策略,在氮掺杂介孔碳材料上设计了超薄碳铠甲层封装的Co9Se8纳米颗粒高效ORR电催化剂(命名为NMC-Co9Se8).外部的超薄碳铠甲层不仅可以改善催化过程中的电子转移过程,抑制纳米颗粒的团聚,而且可以作为盔甲保护内部活性位点免受Cl-吸附和腐蚀.得益于这种独特的结构,NMC-Co9Se8在0.1 mol·L-1 KOH海水电解质中表现出优异的ORR性能,其起始电位为0.904 V,半波电位为0.860 V.更重要的是,基于NMC-Co9Se8催化剂的S-ZABs可提供172.4 mW·cm-2的功率密度和超过150 h的优异长期放电稳定性,均高于基于Pt/C的S-ZABs性能.这项工作为开发用于海水基锌-空气电池和其他能源转换技术具有耐氯离子腐蚀且高效的ORR催化剂提供了新思路.
Engineering Carbon-Chainmail-Shell Coated Co9Se8 Nanoparticles as Efficient and Durable Catalysts in Seawater-Based Zn-Air Batteries
With the depletion of fossil fuel resources and the increasing severity of environmental pollution,it has become imperative to seek energy conversion devices with low cost,high efficiency and excellent environmental compatibility.Considering their high theoretical energy density,affordability and environmentally friendly nature,Zn-air batteries(ZABs)are regarded as promising energy storage and conversion devices.The utilization of seawater in ZABs(S-ZABs)holds great potential,given the abundance of seawater reserves,offering economic and social benefits such as reducing electrolyte costs and alleviating competition for freshwater consumption in human activities.However,the application of S-ZABs remains challenging,particularly in constructing high-performance cathode oxygen reduction reaction(ORR)catalysts that are highly resistant to Cl-corrosion in seawater-based electrolytes.In this study,we have engineered an ultrathin carbon-chainmail-shell encapsulated Co9Se8 nanoparticles on N-doped mesoporous carbon(named as NMC-Co9Se8)electrocatalysts using the high-temperature selenization strategy.The ultrathin carbon-chainmail-shell on the outside improves electron transfer during the electrocatalysis and suppresses nanoparticles agglomeration.Additionally,it could act as armor for protecting the inner active site from the adsorption of corrosive Cl-.Benefit from this unique structure,the NMC-Co9Se8 catalyst exhibits excellent ORR performance,with an onset potential of 0.904 V and a half-wave potential of 0.860 V in seawater-based electrolytes.The catalyst also affords the lowest Tafel slope(35.5 mV·dec-1)and the highest kinetics current density of 9.816 mA·cm-2 at 0.85 V among all investigated samples.Owing to the protective effect of the ultrathin carbon-chainmail-shell on the inner active sites,the NMC-Co9Se8 catalyst retains 91.6%of its initial activity after continuous operation for 50000 s,surpassing the commercial Pt/C catalyst(with a current retention rate of 62.8%).More importantly,the S-ZABs based on the NMC-Co9Se8 catalyst deliver a high maximum power density of 172.4 mW·cm-2 and a high specific capacity of 643.9 mAh·g-1,exceeding those of S-ZABs powered by the commercial Pt/C catalyst(151.2 mW·cm-2 and 548.3 mAh·g-1).Furthermore,the S-ZABs driven by the NMC-Co9Se8 catalyst demonstrate a discharge stability for up to 150 h and maintain a stable charge-discharge cycle stability over 200 h,demonstrating the practical application performance of the NMC-Co9Se8 catalyst.In practical applications,the S-ZABs driven by the NMC-Co9Se8 catalyst can illuminate a light-emitting diode(LED)with a driving voltage of 2 V for several hours.This work provides new ideas for developing efficient and durable catalysts with high Cl-corrosion resistance for applications in seawater-based Zn-air batteries and other energy conversion technologies.

Co9Se8 nanoparticleOxygen reduction reactionUltrathin carbon-chainmail-shellSeawater-based Zn-air batteryCl-corrosion-resistant

汪已萱、张灿辉、汪兴坤、段嘉瑞、童科程、代水星、初蕾、黄明华

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中国海洋大学材料科学与工程学院,山东 青岛 266000

Co9Se8纳米颗粒 氧还原反应 超薄碳铠甲层 海水锌空气电池 耐氯离子腐蚀

国家自然科学基金国家自然科学基金山东省自然科学基金

5226114570022279124ZR2022ZD30

2024

物理化学学报
中国化学会

物理化学学报

CSTPCD北大核心
影响因子:0.951
ISSN:1000-6818
年,卷(期):2024.40(6)