Selectively strong molecular adsorption on boron nitride monolayer induced by transition metal substrate

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초록

We studied adsorption of several molecules (CO, CO2, H2O, N2O, NO, NO2, and O-2) on hexagonal boron nitride (h-BN) monolayers supported on transition metal (TM) surfaces, using density functional calculations. We observed that all the molecules bind very weakly on the pristine h-BN, with binding energies in the range of 0.02-0.03 eV. Interestingly, however, when h-BN is supported on the TM surface, NO2 and O-2 become strongly chemisorbed on h-BN, with binding energies of > 1 eV, whereas other molecules still physisorbed, with binding energies of similar to 0.1 eV at most. The electron transfer from TM to p(z) states of h-BN played a substantial role in such strong bindings of NO2 and O-2 on h-BN, as these molecules possess unpaired electrons that can interact with p(z) states of h-BN. Such selective molecular binding on h-BN/TM originates from the peculiar distribution of the spin-polarized highest occupied and lowest unoccupied molecular orbitals of NO2 and O-2. Strong molecular adsorption and high selectivity would make the h-BN/TM system possible for a variety of applications such as catalysts and gas sensors. (C) 2013 Elsevier B. V. All rights reserved.

키워드

Density functional calculationsBoron nitrideTransition metal substrateCatalystGas sensorNANOTUBESNANORIBBONSGRAPHENE
제목
Selectively strong molecular adsorption on boron nitride monolayer induced by transition metal substrate
저자
Kim, GyubongJung, Sung ChulHan, Young-Kyu
DOI
10.1016/j.cap.2013.09.010
발행일
2013-11
유형
Article
저널명
Current Applied Physics
13
9
페이지
2059 ~ 2063