Author Correction: Enhancing Hydrogen Peroxide Electrosynthesis through Electrochemistry and Product Engineering
Key Ideas
  • Supplementary data errors in a scientific manuscript were corrected, specifically related to ethylene glycol electrooxidation and Ni1Mn1-MOF-Se/NF data.
  • The corrections made did not alter the conclusions drawn in the research work, maintaining the integrity and validity of the study.
  • The article discusses energy-efficient hydrogen peroxide electrosynthesis advancements achieved through electrochemistry pairing and product engineering techniques.
The article published in Nature Communications provides an author correction related to the Supplementary Information of a scientific manuscript. The correction addresses errors in the data presented for ethylene glycol electrooxidation and Ni1Mn1-MOF-Se/NF. The original version contained inaccuracies in Supplementary Fig. 19a and Supplementary Fig. 11a, which were rectified by updating the Source Data with the correct information. The corrections made to the Supplementary Information files did not impact the overall conclusions derived from the research work, ensuring the study's reliability and validity. The authors, affiliated with the State Key Laboratory of Chemical Resource Engineering at Beijing University of Chemical Technology, include Jun Qi, Yadong Du, Qi Yang, Na Jiang, Jiachun Li, Yi Ma, Yangjun Ma, Xin Zhao, and Jieshan Qiu. The research focuses on the development of energy-saving and product-oriented hydrogen peroxide electrosynthesis through innovative electrochemistry pairing and product engineering methods. The study aims to enhance the efficiency and sustainability of hydrogen peroxide production processes. The article is licensed under a Creative Commons Attribution 4.0 International License, allowing the sharing and adaptation of the content with appropriate credit to the authors and source. Readers are encouraged to reference the updated data provided in the Supplementary Information files for accurate research outcomes.
ADVANCEH2

Our vision is to be the world's leading online platform for advancing the use of hydrogen as a critical piece needed to deliver net-zero initiatives and the promise of a clean H2 energy future.

© 2024 AdvanceH2, LLC. All rights reserved.