Single boron atom anchored on graphitic carbon nitride nanosheet (B/g-C2N) as a photocatalyst for nitrogen fixation:A first-principles study

被引:0
|
作者
祝浩然 [1 ,2 ]
陈嘉亮 [1 ]
韦世豪 [1 ]
机构
[1] Department of Microelectronic Science and Engineering, School of Physical Science and Technology, Ningbo University
[2] College of Electronic Information and Optical Engineering, Nankai University
基金
中国国家自然科学基金;
关键词
first-principles calculation; N2; reduction; catalysts; electronic structure; reaction mechanisms; reaction paths;
D O I
暂无
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
It is essential to explore high efficient catalysts for nitrogen reduction in ammonia production. Based on the firstprinciples calculation, we find that B/g-C2N can serve as high performance photocatalyst in N2fixation, where single boron atom is anchored on the g-C2N to form B/g-C2N. With the introduction of B atom to g-C2N, the energy gap reduces from 2.45 e V to 1.21 e V and shows strong absorption in the visible light region. In addition, N2can be efficiently reduced on B/g-C2N through the enzymatic mechanism with low onset potential of 0.07 V and rate-determining barrier of 0.50 e V.The "acceptance-donation" interaction between B/g-C2N and N2plays a key role to active N2, and the BN2moiety of B/gC2N acts as active and transportation center. The activity originates from the strong interaction between 1π 1π*orbitals of N2and molecular orbitals of B/g-C2N, the ionization of 1π orbital and the filling of 1π*orbital can increase the N≡N bond length greatly, making the activation of N2. Overall, this work demonstrates that B/g-C2N is a promising photocatalyst for N2fixation.
引用
收藏
页码:336 / 343
页数:8
相关论文
共 50 条
  • [41] Rational design of highly efficient electrocatalytic single-atom catalysts for nitrogen reduction on nitrogen-doped graphene and g-C2N supports
    Liu, Shize
    Liu, Jing-yao
    JOURNAL OF POWER SOURCES, 2022, 535
  • [42] Anchoring boron on a covalent organic framework as an efficient single atom metal-free photo-electrocatalyst for nitrogen fixation: a first-principles analysis
    Dutta, Supriti
    Pati, Swapan K.
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2022, 24 (18) : 10765 - 10774
  • [43] A first-principles study of lithium absorption in boron-or nitrogen-doped single-walled carbon nanotubes
    Zhou, Z
    Gao, XP
    Yan, J
    Song, DY
    Morinaga, M
    CARBON, 2004, 42 (12-13) : 2677 - 2682
  • [44] Dopamine sensing by boron and nitrogen co-doped single-walled carbon nanotubes: A first-principles study
    Yeh, Chen-Hao
    Hsiao, Yung-Jou
    Jiang, Jyh-Chiang
    APPLIED SURFACE SCIENCE, 2019, 473 : 59 - 64
  • [45] Strong excitonic effects in the optical properties of graphitic carbon nitride g-C3N4 from first principles
    Wei, Wei
    Jacob, Timo
    PHYSICAL REVIEW B, 2013, 87 (08)
  • [46] Adsorption of Nucleic Acid Bases and Amino Acids on Single-Walled Carbon and Boron Nitride Nanotubes: A First-Principles Study
    Zheng, Jiaxin
    Song, Wei
    Wang, Lu
    Lu, Jing
    Luo, Guangfu
    Zhou, Jing
    Qin, Rui
    Li, Hong
    Gao, Zhengxiang
    Lai, Lin
    Li, Guangping
    Mei, Wai Ning
    JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2009, 9 (11) : 6376 - 6380
  • [47] First-Principles Study of the Electronic Properties and Thermal Expansivity of a Hybrid 2D Carbon and Boron Nitride Material
    Olaniyan, Okikiola
    Moskaleva, Lyudmila, V
    C-JOURNAL OF CARBON RESEARCH, 2021, 7 (01):
  • [48] Vanadium doped B5N3 and B7N5 monolayer as single atom catalyst for nitrogen reduction reaction - a first-principles study
    Panjulingam, Nandhini
    Lakshmipathi, Senthilkumar
    MOLECULAR PHYSICS, 2024, 122 (13)
  • [49] Single ruthenium atom supported on g-C3N4 as an efficient photocatalyst for nitrogen fixation in ultra-pure water
    Li, Li
    Yu, Yuan
    Lin, Songmin
    Chu, Wenhui
    Sun, Dongfeng
    Su, Qingmei
    Ma, Shufang
    Du, Gaohui
    Xu, Bingshe
    CATALYSIS COMMUNICATIONS, 2021, 153
  • [50] Single ruthenium atom supported on g-C3N4 as an efficient photocatalyst for nitrogen fixation in ultra-pure water
    Li, Li
    Yu, Yuan
    Lin, Songmin
    Chu, Wenhui
    Sun, Dongfeng
    Su, Qingmei
    Ma, Shufang
    Du, Gaohui
    Xu, Bingshe
    Catalysis Communications, 2021, 153