Tran Phan Khanh Linh, Tran Duy Thanh, Malhotra Deepanshu, Prabhakaran Sampath, Kim Do Hwan, Kim Nam Hoon, Lee Joong Hee
Department of Nano Convergence Engineering, Jeonbuk National University, Jeonju, Jeonbuk, 54896, Republic of Korea.
Division of Science Education, Graduate School of Department of Energy Storage/Conversion Engineering, Jeonbuk National University, Jeonju, Jeonbuk, 54896, Republic of Korea.
Small. 2021 Dec;17(50):e2103826. doi: 10.1002/smll.202103826. Epub 2021 Oct 8.
Atomic metal-modulated heterostructures have been evidenced as an exciting solution to develop high-performance multifunctional electrocatalyst toward water splitting. In this research, a catalyst of continuous cobalt-cobalt oxide (Co-CoO) lateral heterostructures implanted with well-dispersed rhodium (Rh) atoms and shelled over conductive porous 1D copper (Cu) nano-supports for hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) in both freshwater and seawater under alkaline condition is proposed. It is found that synergistic effects coming from uniform Rh atoms at doping level and Co-CoO heterostructures afford rich multi-integrated active sites and excellent charge transfer, thereby effectively promoting both HER and OER activities. The material requires overpotentials of 107.3 and 137.7 mV for HER and 277.7 and 260 mV for OER to reach an output of 10 mA cm in freshwater and mimic seawater, respectively, surpassing earlier reported catalysts. Compared to a benchmark a Pt/C//RuO -based two-electrode electrolyzer, a device derived from the 1D-Cu@Co-CoO/Rh on copper foam delivers comparable cell voltages of 1.62, 1.60, and 1.70 V at 10 mA cm in freshwater, mimic seawater, and natural seawater, respectively, together with robust stability. These results evidence that 1D-Cu@Co-CoO/Rh is a promising catalyst for green hydrogen generation via freshwater and seawater electrolysis applications.
原子金属调制的异质结构已被证明是开发用于水分解的高性能多功能电催化剂的一种令人兴奋的解决方案。在本研究中,提出了一种连续钴 - 氧化钴(Co - CoO)横向异质结构的催化剂,该结构植入了分散良好的铑(Rh)原子,并包覆在导电多孔一维铜(Cu)纳米载体上,用于在碱性条件下的淡水和海水中的析氢反应(HER)和析氧反应(OER)。研究发现,来自掺杂水平均匀的Rh原子和Co - CoO异质结构的协同效应提供了丰富的多集成活性位点和优异的电荷转移,从而有效地促进了HER和OER活性。该材料在淡水和模拟海水中达到10 mA cm的输出时,HER的过电位分别为107.3和137.7 mV,OER的过电位分别为277.7和260 mV,超过了先前报道的催化剂。与基于Pt/C//RuO₂的双电极电解槽基准相比,由泡沫铜上的一维Cu@Co - CoO/Rh衍生的装置在淡水、模拟海水和天然海水中10 mA cm时分别提供了1.62、1.60和1.70 V的可比电池电压,同时具有强大的稳定性。这些结果证明,一维Cu@Co - CoO/Rh是通过淡水和海水电解应用产生绿色氢气的有前途的催化剂。