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Exploratory Evaluation of Er/Y-Modified RuO2 for Acidic Oxygen Evolution
Ying Yang1, Yihao Qu1, Limei Cao1
1School of Resources and Environmental Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai200237, China.
Abstract:
The intrinsic instability of ruthenium dioxide (RuO2) under acidic oxygen evolution reaction (OER) conditions remains a critical challenge for the development of durable OER electrocatalysts. Here, we present an exploratory comparative half-cell investigation of one nominal Er/Y-modified RuO2 composition. Under the specified conditions (0.1 M HClO4, room temperature, three-electrode configuration), Er0.1Y0.1Ru0.8O2 required 226 mV to reach 10 mA cm-2, compared with 257 mV for identically prepared h-RuO2. During an 80,000 s chronopotentiometry test, the modified sample showed lower Ru leaching than h-RuO2 (117 versus 281 μg L-1). Fresh-state XRD, HRTEM, XPS, EIS, and DFT-PDOS identify structural and electronic differences that are consistent with a qualitative working model of Er/Y modification. The current data do not establish individual Er/Y contributions, an Er/Y-ratio-performance relationship, an OER pathway, or PEMWE/MEA performance. Systematic composition-controlled, operando, and device-level measurements are required to test these questions.
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