65 / 2019-10-19 13:51:54
Na0.71CoO2 promoted sodium uptake via faradaic reaction for highly efficient capacitive deionization
Na0.71CoO2, Capacitive deionization, Electrosorption, Intercalation
摘要待审
真真 刘 / 宁夏大学
Capacitive deionization is a promising method to produce portable water. However, its salt removal capacity is unsatisfied up to now. In this work, we proposed novel asymmetrical dual-ion capacitive deionization (A-CDI) device where the negative and positive electrodes are Na0.71CoO2 (NCO) and Ag@reduced graphene oxide (rGO), respectively. NCO exhibited laminated nanostructure, providing abundant vacancies for inserting sodium ions during the charge. Instantaneously, Ag@rGO is responsible for reacting with chloride ions, forming AgCl. As a result, Ag@rGO‖NCO A-CDI device demonstrates high desalination capacity, i.e. 34.8 mg/g with charge efficiency of 97% can be achieved in NaCl solution with an initial concentration of 500 mg/L at cell voltage of 1.2 V, which is much higher than that of most carbon electrodes. Moreover, the salt removal capacity of Ag@rGO‖NCO A-CDI device in the first cycle was up to ~ 29 mg/g and decreased to ~19 mg/g after 50 cycles, demonstrating 66% remaining. Significantly, it is found that the (004) phase of NCO after A-CDI shifted to left, which implies the d-spacing increased due to the intercalation of Na+. Benefit from the novel structure and active Faradaic reaction, NCO should be a promising candidate as electrode for high-efficient CDI.
重要日期
  • 会议日期

    11月15日

    2019

    11月18日

    2019

  • 10月20日 2019

    初稿截稿日期

  • 11月18日 2019

    注册截止日期

承办单位
John Wiley & Sons Inc.出版集团
温州大学化学与材料工程学院
温州大学新材料与产业技术研究院
《Carbon Energy》杂志
浙江省自然科学基金委
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