弗兰克在 Coplanar Ir/C 超薄纳米片中的部分位移促进进化反应反应
Pengfei Liu1, Xin Zhang1, Jiawei Fei1
1State Key Laboratory Base of Eco-Chemical Engineering, International Science and Technology Cooperation Base of Eco-chemical Engineering and Green Manufacturing, College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao, 266042, P. R. China.
研究人员开发了用于质子交换膜电解剂的新型超薄化物纳米片. 这些催化剂对进化表现出异常的活性和稳定性,这对于高效的绿色生产至关重要.
科学领域:
- 材料科学 材料科学 材料科学
- 电化学 电化学 电化学
- 催化剂是一种催化剂.
背景情况:
- 质子交换膜 (PEM) 电解剂需要高度活跃和稳定的酸演化催化剂来实现商业可行性.
- 目前的催化剂在长期运行和效率方面面临挑战.
研究的目的:
- 在碳上合成具有增强催化性能的纳米颗粒 (Dr-Ir/C NSs) 的新型超薄纳米片.
- 为了研究结构-活性关系以提高演化反应 (HER) 性能.
主要方法:
- 使用非平衡高温热冲击方法 (>1200°C) 和KBr模板合成共平面超薄纳米片.
- 使用几何相位分析和理论计算进行表征.
- 在PEM电解装置中进行电化学测试.
主要成果:
- 在50mV时,Dr-Ir/CNS实现了6.64A mg-1的高质量活性,超过了许多现有的基于Ir的催化剂.
- 在PEM电解器中,在1.0 A cm-2下200小时稳定运行.
- 超薄的纳米板结构保持不变,显示出对聚合物的抵抗力.
结论:
- 合成的Dr-Ir/CNS为PEM电解剂提供了优越的HER活性和稳定性.
- 弗兰克部分位移 (FPD) 诱导压力应变,优化H*在Ir上的吸附,以增强内在活性.
- 这项工作为开发用于绿色生产的先进电催化剂提供了一个有希望的途径.
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