Single Boron Atom Anchored on graphitic carbon nitride nanosheet (B/g-CN) as a photocatalyst for Nitrogen fixation: A First-Principles Study
arXiv:1910.08346
Abstract
Photocatalytic nitrogen reduction is the promising way for ammonia production, the question now is that the search of highly active and low active catalysts. Based on the first-principles calculation, single boron atom is anchored on the g-CN to form B/g-CN, the results show that B/g-CN can serve as a potential photocatalyst for N fixation. The introduction of B atom to g-CN, the energy gap will reduce from 2.45 eV to 1.21 eV, and also show strong absorption in the visible light region. In addition, N can be efficiently reduced on B/g-CN through the enzymatic mechanism with low onset potential of 0.07 V and rate-determing barrier of 0.50 eV. The "acceptance-donation" interaction between B/g-CN and N plays a key role to active N, the BN moiety of B/g-CN acts as active and transportation center. And the activity originates from the strong interaction between 11* orbitals of N and molecular orbitals of B/g-CN, the ionization of 1 orbital and the filling of 1* orbital can increase the NN bond length greatly, making the activation of N. Overall, this work demonstrates B/g-CN is a promising photocatalyst for N fixation.