Xianying Wang
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Efficacy and safety of insulin efsitora in type 2 diabetes: a meta-analysis of randomized controlled trials
1 Introduction In the 21st century, type 2 diabetes (T2D) poses a significant and growing public health burden in the world. Approximately 536.6 million adults worldwide were affected by diabetes in 2021, a number projected to rise to 783.2 million by 2045 (1). T2D is characterized by impaired insulin secretion and reduced peripheral insulin sensitivity, leading to chronic hyperglycemia (2, 3). T2D management centers on lifestyle modifications and pharmacological interventions (4, 5).
Correction: Reversible lattice oxygen participation in Ru1−xO2−x for superior acidic oxygen evolution reaction
Correction: Reversible lattice oxygen participation in Ru1−xO2−x for superior acidic oxygen evolution reaction Correction for ‘Reversible lattice oxygen participation in Ru1−xO2−x for superior acidic oxygen evolution reaction’ by Jia Cao et al., J. Mater. Chem. A, 2025, https://doi.org/10.1039/D5TA01484K. This article is Open Access This article has not yet been cited.
Reversible Lattice Oxygen Participation in Ru1-xO2-x for Superior Acidic Oxygen Evolution Reaction
Reversible Lattice Oxygen Participation in Ru1-xO2-x for Superior Acidic Oxygen Evolution Reaction A stable and efficient RuO2-based electrocatalyst for the acidic oxygen evolution reaction (OER) is essential to replace the current IrO2 anode in proton-exchange membrane water electrolysis (PEMWE). In this research, we introduce RuO2 catalysts designed with coexisting oxygen and ruthenium vacancies using a metal-organic pyrolysis method.
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