Zhang Yanyi, Lyu Juan, Zhao Yi-Lu, Hu Kailong, Chen Zuhuang, Lin Xi, Xie Guoqiang, Liu Xingjun, Qiu Hua-Jun
School of Materials Science and Engineering and Institute of Blockchain Research and Development, Harbin Institute of Technology, Shenzhen, 518055, China.
School of Physics Science and Technology, Inner Mongolia University, Hohhot 010021, China.
Nanoscale. 2021 Oct 8;13(38):16164-16171. doi: 10.1039/d1nr03539h.
With the combination of the advantages of both Zn-Ag and Zn-air batteries, hybrid Zn-Ag/Zn-air batteries nevertheless suffer greatly from structural instability and activity degradation of the catalysts at the air electrodes. Herein, we introduce a scalable chemical dealloying procedure to synthesize mutually interacting and stable bifunctional catalysts, consisting of imbedded Ag nanoparticles for the oxygen reduction reaction (ORR) and quantitatively designed multicomponent high-entropy oxides (HEOs) for the oxygen evolution reaction (OER). The ORR performance and the Zn-Ag battery capacity can be precisely controlled by the content of Ag nanoparticles. Impressively, with a significantly low Ag content (∼9.13 wt%) in the bifunctional (AlNiCoFeCr)O/Ag, our hybrid Zn-Ag/Zn-air batteries using such catalysts are able to be continuously charged/discharged for more than 450 h and deliver a high energy density of 810 W h kg. We expect that these stabilized noble metals in HEO nanocomposites may work as multifunctional electrocatalysts in many other energy conversion devices.
尽管锌银电池和锌空气电池各有优点,但混合锌银/锌空气电池仍因空气电极处催化剂的结构不稳定性和活性降解而受到严重影响。在此,我们引入一种可扩展的化学脱合金工艺来合成相互作用且稳定的双功能催化剂,该催化剂由用于氧还原反应(ORR)的嵌入银纳米颗粒和用于析氧反应(OER)的定量设计的多组分高熵氧化物(HEO)组成。ORR性能和锌银电池容量可通过银纳米颗粒的含量精确控制。令人印象深刻的是,在双功能(AlNiCoFeCr)O/Ag中银含量极低(约9.13 wt%)的情况下,使用这种催化剂的混合锌银/锌空气电池能够连续充放电超过450小时,并提供810 W h kg的高能量密度。我们预计,这些在HEO纳米复合材料中稳定的贵金属可能在许多其他能量转换装置中作为多功能电催化剂发挥作用。