Stable all-solid-state sodium-sulfur batteries for low-temperature operation enabled by sodium alloy anode and confined sulfur cathode

被引:27
作者
Jhang, Li-Ji
Wang, Daiwei [2 ]
Silver, Alexander [3 ]
Li, Xiaolin [1 ,4 ]
Reed, David [4 ]
Wang, Donghai [2 ]
机构
[1] Penn State Univ, Dept Chem Engn, University Pk, PA 16802 USA
[2] Penn State Univ, Dept Mech Engn, University Pk, PA 16802 USA
[3] Penn State Univ, Dept Mat Sci & Engn, University Pk, PA 16802 USA
[4] Pacific Northwest Natl Lab, Energy & Environm Directorate, Richland, WA 99352 USA
关键词
Na-S batteries; All-solid-state batteries; Na alloy anodes; Sulfur composite cathodes; RECENT PROGRESS; PERFORMANCE; ELECTROLYTES; ELECTRODES; LITHIUM; SN; STORAGE; NA3PS4; CARBON; METAL;
D O I
10.1016/j.nanoen.2022.107995
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
All-solid-state sodium-sulfur (Na-S) batteries are promising for stationary energy storage devices because of their low operating temperatures (less than 100 degrees C), improved safety, and low-cost fabrication. Using Na alloy instead of Na metal as an anode in Na-S batteries can prevent dendrite growth and improve interfacial stability between the anode and solid electrolytes to achieve long-cycling stability. A high-sulfur content cathode possessing high sulfur utilization is also important to enable an energy-dense Na-S battery. In this work, we studied Na-Sb and Na-Sn alloy anodes and demonstrated the superiority of Na3Sb alloy undergoing a stable Na alloying/dealloying process at 0.04 mA cm-2 for over 500 h. Combining the optimized Na3Sb alloy anode with sulfur-carbon composites prepared by the vapor deposition approach, the full cell shows a high sulfur specific capacity and improved rate performance. Moreover, the all-solid-state Na alloy-S battery can deliver a high initial discharge specific capacity of 1377 mAh g-1 and maintain good capacity retention of 70 % after 180 cycles at 60 degrees C. Post -cycle characterizations show that both the anode and cathode perform a reversible discharge/charge process after the 1st cycle, and the cathode undergoes significantly rearranged distributions of carbon and solid-state electrolytes after 180 cycles due to severe volume change induced by repeated sodiation/desodiation process. Data availability: Data will be made available on request.
引用
收藏
页数:8
相关论文
共 50 条
  • [41] Sodium Sulfide Cathodes Superseding Hard Carbon Pre-sodiation for the Production and Operation of Sodium-Sulfur Batteries at Room Temperature
    Bloi, Luise Maria
    Pampel, Jonas
    Doerfler, Susanne
    Althues, Holger
    Kaskel, Stefan
    ADVANCED ENERGY MATERIALS, 2020, 10 (07)
  • [42] All-solid-state sodium-sulfur battery showing full capacity with activated carbon MSP20-sulfur-Na3SbS4 composite
    Ando, Taka
    Atsushi, Sakuda
    Tatsumisago, Masahiro
    Akitoshi, Hayashi
    ELECTROCHEMISTRY COMMUNICATIONS, 2020, 116
  • [43] Revealing stable organic cathode/solid electrolyte interface to promote all-solid-state sodium batteries using organic cathodes
    Yang, Shuaishuai
    Shao, Changxiang
    Xiao, Xiong
    Fang, Debao
    Li, Na
    Zhao, Enyue
    Wang, Chengzhi
    Chen, Lai
    Li, Ning
    Li, Jingbo
    Su, Yuefeng
    Jin, Haibo
    ENERGY STORAGE MATERIALS, 2024, 73
  • [44] Ultra-Stable Cycling of High Capacity Room Temperature Sodium-Sulfur Batteries Based on Sulfurated Poly(acrylonitrile)
    Murugan, Saravanakumar
    Niesen, Stefan
    Kappler, Julian
    Kuester, Kathrin
    Starke, Ulrich
    Buchmeiser, Michael R.
    BATTERIES & SUPERCAPS, 2021, 4 (10) : 1636 - 1646
  • [45] Three-Dimensionally Reinforced Freestanding Cathode for High Energy Room-Temperature Sodium-Sulfur Batteries
    Ghosh, Arnab
    Kumar, Ajit
    Roy, Amlan
    Panda, Manas Ranjan
    Kar, Mega
    MacFarlane, Douglas R.
    Mitra, Sagar
    ACS APPLIED MATERIALS & INTERFACES, 2019, 11 (15) : 14101 - 14109
  • [46] Tailoring binder-cathode interactions for long-life room-temperature sodium-sulfur batteries
    Eng, Alex Yong Sheng
    Dan-Thien Nguyen
    Kumar, Vipin
    Subramanian, Gomathy Sandhya
    Ng, Man-Fai
    Seh, Zhi Wei
    JOURNAL OF MATERIALS CHEMISTRY A, 2020, 8 (43) : 22983 - 22997
  • [47] All-solid-state lithium-sulfur batteries assembled by composite polymer electrolyte and amorphous sulfur/rGO composite cathode
    Chen, Fei
    Puente, P. M. Gonzalez
    Zhang, Yiluo
    Cao, Shiyu
    Lu, Xinqi
    Yi, Zhuoran
    Shen, Qiang
    Li, Jun
    SOLID STATE IONICS, 2022, 380
  • [48] Enabling a Stable Room-Temperature Sodium-Sulfur Battery Cathode by Building Heterostructures in Multichannel Carbon Fibers
    Ye, Xin
    Ruan, Jiafeng
    Pang, Yuepeng
    Yang, Junhe
    Liu, Yongfeng
    Huang, Yizhong
    Zheng, Shiyou
    ACS NANO, 2021, 15 (03) : 5639 - 5648
  • [49] Anode-Less All-Solid-State Batteries Operating at Room Temperature and Low Pressure
    Oh, Jihoon
    Choi, Seung Ho
    Kim, Ji Young
    Lee, Jieun
    Lee, Taegeun
    Lee, Nohjoon
    Lee, Taeyong
    Sohn, Yeeun
    Chung, Woo Jun
    Bae, Ki Yoon
    Son, Samick
    Choi, Jang Wook
    ADVANCED ENERGY MATERIALS, 2023, 13 (38)
  • [50] Understanding the Redox Mechanism of Sulfurized Poly(acrylonitrile) as Highly Rate and Cycle Stable Cathode Material for Sodium-Sulfur Batteries
    Kappler, Julian
    Tonbul, Gueldeniz
    Schoch, Roland
    Murugan, Saravanakumar
    Nowakowski, Michal
    Lange, Pia Lena
    Klostermann, Sina Vanessa
    Bauer, Matthias
    Schleid, Thomas
    Kaestner, Johannes
    Buchmeiser, Michael Rudolf
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2023, 170 (01)