The reduction reaction of carbon dioxide on a precise number of Fe atoms anchored on two-dimensional biphenylene

催化作用 联苯 电化学 化学 密度泛函理论 氧化还原 二氧化碳电化学还原 金属 结晶学 物理化学 计算化学 无机化学 一氧化碳 电极 有机化学 亚苯基 聚合物
作者
Na Xing,Ziyang Liu,Zhongwei Wang,Yan Gao,Qingfang Li,Haifeng Wang
出处
期刊:Physical Chemistry Chemical Physics [The Royal Society of Chemistry]
卷期号:24 (44): 27474-27482 被引量:9
标识
DOI:10.1039/d2cp02911a
摘要

In recent accomplishments, a new two-dimensional allotrope of carbon-biphenylene (BP) was experimentally synthesized [Fan et al., Science, 372, 852-856 (2021)]. The BP sheet is composed of four-, six-, and eight-membered carbon rings constructed using periodically arranged sp2-hybridized carbon atoms. Unlike semi-metallic graphene, BP is metallic with quite active atoms and chemical bonds, and the binding strength with reaction intermediates will be enhanced, which means that it may exhibit good catalytic activity in some electrochemical catalytic reactions. Using spin-polarized density functional theory based on first-principles simulations and ab initio molecular dynamic calculations, we systematically investigated the structure, thermodynamic stability, CO2 reduction reaction (CO2RR) activity and product selectivity of a precise number of Fen (n = 1-3) atoms embedded on a BP monolayer. The calculated results indicate that our designed Fe1@BP, Fe2@BP and Fe3@BP complexes possess good thermodynamic and electrochemical stabilities and strong absorption for CO2, which promotes the activation of CO2. Furthermore, the Fe2@BP catalyst possesses good catalytic ability for the CO2RR to CH3OH due to a small rate determining potential of -0.48 V. In addition, Fe2- and Fe3@BP catalysts demonstrate superior catalytic performance for the CO2RR to CH4 with low rate-limiting steps. More importantly, both the Fe2 and Fe3@BP catalysts can effectively suppress the hydrogen evolution reaction (HER) during the entire CO2RR process. The electronic structure analysis shows that the enhanced ability of Fe1-3@BP catalysts for effective CO2 reduction can be attributed to the establishment of strong hybridization between Fe-3d and O-2p or C-2p states, which is conducive to the transfer of strong electrons to the anti-bond orbital of CO2. This work provides an in-depth insight into the intrinsic catalytic mechanisms of the CO2RR on Fe1-3@BP catalysts, and highlights the excellent performance of the BP sheet as a substrate material for the polyatomic catalyst.

科研通智能强力驱动
Strongly Powered by AbleSci AI
科研通是完全免费的文献互助平台,具备全网最快的应助速度,最高的求助完成率。 对每一个文献求助,科研通都将尽心尽力,给求助人一个满意的交代。
实时播报
1秒前
1秒前
科目三应助cjk采纳,获得10
2秒前
NULIFENDOU完成签到,获得积分10
3秒前
3秒前
枫叶-ZqqC发布了新的文献求助50
3秒前
Swiftie发布了新的文献求助10
4秒前
112完成签到,获得积分20
5秒前
搜集达人应助发发采纳,获得10
6秒前
Lazarus_x发布了新的文献求助10
6秒前
白方明发布了新的文献求助10
7秒前
7秒前
7秒前
9秒前
大东子完成签到,获得积分10
9秒前
蔡扬鹏完成签到,获得积分10
9秒前
10秒前
11秒前
11秒前
13秒前
NexusExplorer应助karulko采纳,获得10
13秒前
自由笑晴完成签到 ,获得积分10
14秒前
木叶发布了新的文献求助10
14秒前
15秒前
Strickland完成签到,获得积分20
15秒前
凯蒂发布了新的文献求助10
15秒前
无花果应助咸鱼好翻身采纳,获得10
16秒前
17秒前
17秒前
17秒前
包子妹妹发布了新的文献求助10
17秒前
彭于晏应助谨慎嫣然采纳,获得10
17秒前
完美世界应助甜美的绮菱采纳,获得10
18秒前
18秒前
Strickland发布了新的文献求助10
18秒前
脑洞疼应助yy采纳,获得10
19秒前
愤怒的小甜瓜完成签到,获得积分10
19秒前
Julien发布了新的文献求助10
19秒前
kookery完成签到,获得积分10
19秒前
19秒前
高分求助中
Continuum thermodynamics and material modelling 3000
Production Logging: Theoretical and Interpretive Elements 2700
Healthcare Finance: Modern Financial Analysis for Accelerating Biomedical Innovation 2000
Applications of Emerging Nanomaterials and Nanotechnology 1111
Unseen Mendieta: The Unpublished Works of Ana Mendieta 1000
Les Mantodea de Guyane Insecta, Polyneoptera 1000
工业结晶技术 880
热门求助领域 (近24小时)
化学 医学 材料科学 生物 工程类 有机化学 生物化学 纳米技术 内科学 物理 化学工程 计算机科学 复合材料 基因 遗传学 物理化学 催化作用 细胞生物学 免疫学 电极
热门帖子
关注 科研通微信公众号,转发送积分 3489857
求助须知:如何正确求助?哪些是违规求助? 3076978
关于积分的说明 9147123
捐赠科研通 2769152
什么是DOI,文献DOI怎么找? 1519630
邀请新用户注册赠送积分活动 704069
科研通“疑难数据库(出版商)”最低求助积分说明 702084