Lee Hae In, Cho Hyun-Seok, Kim MinJoong, Lee Jae Hun, Lee ChangSoo, Lee Sechan, Kim Sang-Kyung, Kim Chang-Hee, Yi Kwang Bok, Cho Won-Chul
Hydrogen Research Department, Korea Institute of Energy Research (KIER), Daejeon, South Korea.
Graduate School of Energy Science and Technology, Chungnam National University (CNU), Daejeon, South Korea.
Front Chem. 2021 Nov 19;9:787787. doi: 10.3389/fchem.2021.787787. eCollection 2021.
Alkaline water electrolysis (AWE) is a mature water electrolysis technology that can produce green hydrogen most economically. This is mainly attributed to the use of Ni-based materials that are easy to process and inexpensive. The nickel-based meshes with various structures such as woven mesh and expanded mesh are widely used as electrode in the AWE due to its common availability and easy fabrication. However, the morphological effect of meshes on hydrogen evolution reaction (HER) performance has not been studied. Here a new parameter to determine the structural effect of mesh on HER performance was first proposed. The key factors of the parameter were found to be the strand width, pore width and the strand surface area. The woven mesh with the ratio of pore width to strand width that converges to 1 showed the lowest the overpotential. The expanded mesh with the higher the structural surface area exhibited the lowest the overpotential. This study will help to choose an optimal structure for the mesh with the HER electrode.
碱性水电解(AWE)是一种成熟的水电解技术,能够最经济地生产绿色氢气。这主要归因于使用了易于加工且价格低廉的镍基材料。具有各种结构(如编织网和扩张网)的镍基网由于其常见且易于制造,在碱性水电解中被广泛用作电极。然而,网的形态对析氢反应(HER)性能的影响尚未得到研究。在此,首次提出了一个用于确定网对析氢反应性能的结构效应的新参数。发现该参数的关键因素是股线宽度、孔径宽度和股线表面积。孔径宽度与股线宽度之比趋近于1的编织网显示出最低的过电位。结构表面积越高的扩张网显示出最低的过电位。这项研究将有助于为析氢反应电极选择网的最佳结构。