TY - JOUR
T1 - Atomic Layers of MoO2 with Exposed High-Energy (010) Facets for Efficient Oxygen Reduction
AU - Zhang, Chao
AU - Zou, Xiaolong
AU - Du, Zhiguo
AU - Gu, Jianan
AU - Li, Songmei
AU - Li, Bin
AU - Yang, Shubin
N1 - Publisher Copyright:
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
PY - 2018/3/27
Y1 - 2018/3/27
N2 - Although 2D nanocrystals with exposed high-energy facets are highly desired in the field of catalysts due to their anticipant high catalytic activities, they are difficult to be gained. Here, atomic layers of metallic molybdenum dioxide (MoO2) with primarily exposed high-energy (010) facet are achieved via a facile carbothermic reduction approach. The resultant MoO2 exhibits single-crystalline, monoclinic, and ultrathin features with nearly 100% exposed (010) facet, which can significantly reduce reaction barriers toward the oxygen reduction reaction. As a consequence, the atomic layers of MoO2 exhibit high electrocatalytic activity, excellent tolerance to methanol, and good stability for the oxygen reduction reaction in alkaline electrolyte, superior to commercial Pt/C catalysts. It is believed that such new transition metal oxide catalysts with exposed high-energy facets have broad applications in the areas of energy storage and conversions.
AB - Although 2D nanocrystals with exposed high-energy facets are highly desired in the field of catalysts due to their anticipant high catalytic activities, they are difficult to be gained. Here, atomic layers of metallic molybdenum dioxide (MoO2) with primarily exposed high-energy (010) facet are achieved via a facile carbothermic reduction approach. The resultant MoO2 exhibits single-crystalline, monoclinic, and ultrathin features with nearly 100% exposed (010) facet, which can significantly reduce reaction barriers toward the oxygen reduction reaction. As a consequence, the atomic layers of MoO2 exhibit high electrocatalytic activity, excellent tolerance to methanol, and good stability for the oxygen reduction reaction in alkaline electrolyte, superior to commercial Pt/C catalysts. It is believed that such new transition metal oxide catalysts with exposed high-energy facets have broad applications in the areas of energy storage and conversions.
KW - atomic layers
KW - carbothermic reduction
KW - electrocatalysis
KW - high energy facet
KW - oxygen reduction reaction
UR - https://www.scopus.com/pages/publications/85041559242
U2 - 10.1002/smll.201703960
DO - 10.1002/smll.201703960
M3 - 文章
C2 - 29405565
AN - SCOPUS:85041559242
SN - 1613-6810
VL - 14
JO - Small
JF - Small
IS - 13
M1 - 1703960
ER -