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Correction to: Rational Construction of Self-Standing Sulfur-Doped Fe 2 O 3 Anodes with Promoted Energy Storage Capability for Wearable Aqueous Rechargeable NiCo-Fe Batteries (Advanced Energy Materials, (2020), 10, 33, (2001064), 10.1002/aenm.202001064)

  • Jiao Yang
  • , Qichong Zhang
  • , Zhixun Wang
  • , Zhe Wang
  • , Lixing Kang
  • , Miao Qi
  • , Mengxiao Chen
  • , Wei Liu
  • , Wenbin Gong
  • , Weibang Lu
  • , Perry Ping Shum
  • , Lei Wei

Research output: Journal article publicationComment/debate/erratum

Abstract

Relevant references were also omitted from the Supporting Information. Presented below are the relevant sentences from the supporting information, together with the omitted references. The ZNCO NWAs on the CNTF were first synthesized fabricated via a facile hydrothermal method and high-temperature calcination.[1] The CNTF was fabricated by two processes including of floating catalyst chemical vapor deposition (FCCVD) method and twisting method.[1,2] [1] Q. Zhang, W. Xu, J. Sun, Z. Pan, J. Zhao, X. Wang, J. Zhang, P. Man, J. Guo, Z. Zhou, B. He, Z. Zhang, Q. Li, Y. Zhang, L. Xu, Y. Yao, Nano Lett. 2017, 17, 7552. [2] Q. Zhang, X. Wang, Z. Pan, J. Sun, J. Zhao, J. Zhang, C. Zhang, L. Tang, J. Luo, B. Song, Z. Zhang, W. Lu, Q. Li, Y. Zhang, Y. Yao, Nano Lett. 2017, 17, 2719. 2. In the Supporting Information the sentence, The ZNCO NWAs on the CNTF were first synthesized/fabricated via a facile hydrothermal method and high-temperature calcination. Is corrected to the following, In the initial processing step, the ZNCO NWAs on the CNTF were synthesized via a facile hydrothermal method and high-temperature calcination. The electrochemical performance of the as-prepared fiber samples was measured by a three-electrode system using Ag/AgCl or Hg/HgO as reference electrodes. In this context the term “voltage” as used in the manuscript, should be replaced by the term “Potential”. As such the term “Voltage” is replaced with “Potential (V vs Ag/AgCl)” or “Potential (V vs Hg/HgO)” when a three-electrode setup is shown for Figures with CV and GCD curves including Figures 3f, 4a, 4d, 5g–i, 6b, S7, S8, S10a, S17, S18, S19 and S22a. The corrected figures are shown below, 3 Figure (Figure presented.) f) CV data for the electrodes containing S-Fe2O3, Fe2O3, and initial CNTF at 10 mV s−1 scan rate. 4 Figure (Figure presented.) a) CV curves for the S-Fe2O3/CNTF electrodes at various scan rates. d) GCD curves for the S-Fe2O3/CNTF electrodes. 5 Figure (Figure presented.) g) Comparative GCD curves of Ni(OH)2, ZNCO, and ZNCO@Ni(OH)2 electrodes at 4 mA cm−2. h) CV curves for the Ni(OH)2, ZNCO and ZNCO@Ni(OH)2 electrodes at various scan rates. i) GCD curves of the ZNCO@Ni(OH)2 electrode at various current densities. 6 Figure (Figure presented.) b) CV curves for the S-Fe2O3 NWAs/CNTF-based anode and ZNCO@Ni(OH)2 NWAs/CNTF-based cathode collected using a three-electrode system. S7 Figure (Figure presented.) a) CV curves and (b) GCD profiles of initial CNTF electrode anode. S8 Figure (Figure presented.) a) CV and (b) GCD curves of Fe2O3 NWAs/CNTF electrode. S10 Figure (Figure presented.) a) Charge-discharge curves of the S-Fe2O3 NWAs under different current densities. S17 Figure (Figure presented.) a) CV curves and (b) GCD curves of initial CNTF cathode. S18 Figure (Figure presented.) a) CV and (b) GCD curves of ZNCO NWAs/CNTF electrode. S19 Figure (Figure presented.) a) CV and (b) GCD curves of Ni(OH)2/CNTF electrode. S22 Figure (Figure presented.) a) Charge-discharge curves of the ZNCO@Ni(OH)2 NWAs at different current densities. The authors apologize for any inconvenience caused.

Original languageEnglish
Article number2100296
JournalAdvanced Energy Materials
Volume11
Issue number14
DOIs
Publication statusPublished - 15 Apr 2021

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

ASJC Scopus subject areas

  • Renewable Energy, Sustainability and the Environment
  • General Materials Science

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