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用于可再生氢燃料生成的 CdFeO 二元催化剂的固态合成。

Solid-state synthesis of CdFeO binary catalyst for potential application in renewable hydrogen fuel generation.

机构信息

Center of Excellence for Advanced Materials Research, King Abdulaziz University, P.O. Box 80203, Jeddah, 21589, Saudi Arabia.

Department of Chemistry, King Abdulaziz University, P.O. Box 80203, Jeddah, 21589, Saudi Arabia.

出版信息

Sci Rep. 2022 Jan 31;12(1):1632. doi: 10.1038/s41598-022-04999-1.

Abstract

Clean energy is highly needed at this time when the energy requirements are rapidly increasing. The observed increasing energy requirement are largely due to continued industrialization and global population explosion. The current means of energy source is not sustainable because of several reasons, most importantly, environmental pollution and human health deterioration due to burning of fossil fuels. Therefore, this study develops a new catalyst for hydrogen and oxygen evolution by water splitting as a potential energy vector. The binary metal oxide catalyst CdFeO was synthesized by the solventless solid-mechanical alloying method. The as-prepared catalyst was well characterized by several methods including field emission scanning electron microscopy (FESEM), X-ray diffraction spectroscopy (XRD), X-ray photoelectron spectroscopy (XPS), Fourier Transform infrared red spectroscopy (FTIR), energy dispersive X-ray spectroscopy (XEDS). The as-prepared catalyst, CdFeO was successfully applied for water electrolysis at a moderate overpotential (470 mV). Specifically, the onset potential for the oxygen and hydrogen evolution reactions (OER and HER) were 1.6 V and 0.2 V respectively (vs. the reversible hydrogen electrode). The electrode potential required to reach 10 mA/cm for OER (in alkaline medium) and HER (in acidic medium) was 1.70 V (corresponding to overpotential η = 0.47 and - 0.30 V (η = - 0.30 V) respectively. Similarly, the developed OER and HER catalyst displayed high current and potential stability for a period of 12 h. This approach is seen as the right track of making water electrolysis for hydrogen energy feasible through provision of low-energy requirement for the electrolytic process. Therefore, CdFeO is a potential water splitting catalyst for hydrogen evolution which is a clean fuel and an antidote for world dependence on fossil fuel for energy generation.

摘要

在能源需求迅速增长的今天,清洁能源是非常需要的。观察到的能源需求不断增长主要是由于工业化的持续和全球人口的爆炸式增长。目前的能源来源方式由于多种原因不可持续,最重要的是,由于化石燃料的燃烧,造成了环境污染和人类健康恶化。因此,本研究通过水分解开发了一种用于氢和氧进化的新型催化剂,作为潜在的能源载体。二元金属氧化物催化剂 CdFeO 通过无溶剂固-机械合金化法合成。采用场发射扫描电子显微镜(FESEM)、X 射线衍射光谱(XRD)、X 射线光电子能谱(XPS)、傅里叶变换红外红光谱(FTIR)、能量色散 X 射线能谱(XEDS)等多种方法对所制备的催化剂进行了表征。所制备的催化剂 CdFeO 成功地应用于适度过电势(470 mV)下的水电解。具体来说,氧气和氢气析出反应(OER 和 HER)的起始电位分别为 1.6 V 和 0.2 V(相对于可逆氢电极)。在碱性介质中达到 10 mA/cm 的 OER(OER)和在酸性介质中达到 10 mA/cm 的 HER(HER)所需的电极电位分别为 1.70 V(对应于过电势 η=0.47 和-0.30 V(η=-0.30 V)。同样,开发的 OER 和 HER 催化剂在 12 小时内显示出高电流和电位稳定性。这种方法被视为通过为电解过程提供低能量要求,使水电解制氢成为可行能源的正确途径。因此,CdFeO 是一种有潜力的用于氢进化的水分解催化剂,是一种清洁能源,也是世界对化石燃料发电依赖的解毒剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b3a/8803981/e8a06d2673f6/41598_2022_4999_Fig1_HTML.jpg

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