TY - JOUR
T1 - MnO2polymorphs for catalytic carboxylation of 1-butanamine by CO2
AU - Sun, Dalei
AU - Peng, Liang
AU - Yang, Yating
AU - Ye, Jiahui
AU - Fang, Yanxiong
AU - Jiang, San Ping
AU - Shao, Zongping
N1 - Publisher Copyright:
© 2021 Elsevier Ltd. All rights reserved.
PY - 2021/6
Y1 - 2021/6
N2 - N,N′-dibutylurea is an important fine chemical/intermediate with a wide range of applications. Here, the synthesis of N,N′-dibutylurea through catalytic carbonylation of 1-butanamine by CO2over MnO2heterogeneous catalysts was systematically investigated. Four polymorphs of MnO2, including α-MnO2, β-MnO2, δ-MnO2and γ-MnO2with various morphological shapes were synthesized by hydrothermal method through altering the synthesis conditions (raw materials or parameters). Significant impact of the lattice structure of the MnO2oxides on the catalytic activity was demonstrated. Among them, δ-MnO2possessed the most favorable catalytic activity with N,N′-dibutylurea yield as high as 85.78 % at 160» °C for 24» h in CO2, while it is only 76.70 % for the α-MnO2, although they showed the similar specific surface area of around 10» m2» g-1. To understand the different catalytic behaviors among the different structured MnO2, the catalysts were characterized by X-ray photoelectron spectroscopy and temperature-programmed desorption of CO2. It was discovered that the excellent performance of δ-MnO2was ascribed to its high surface basicity from its high concentration of lattice oxygen on surface of MnO2, while the large amount of surface unsaturated coordination manganese also positively affected the catalytic performance of γ-MnO2.
AB - N,N′-dibutylurea is an important fine chemical/intermediate with a wide range of applications. Here, the synthesis of N,N′-dibutylurea through catalytic carbonylation of 1-butanamine by CO2over MnO2heterogeneous catalysts was systematically investigated. Four polymorphs of MnO2, including α-MnO2, β-MnO2, δ-MnO2and γ-MnO2with various morphological shapes were synthesized by hydrothermal method through altering the synthesis conditions (raw materials or parameters). Significant impact of the lattice structure of the MnO2oxides on the catalytic activity was demonstrated. Among them, δ-MnO2possessed the most favorable catalytic activity with N,N′-dibutylurea yield as high as 85.78 % at 160» °C for 24» h in CO2, while it is only 76.70 % for the α-MnO2, although they showed the similar specific surface area of around 10» m2» g-1. To understand the different catalytic behaviors among the different structured MnO2, the catalysts were characterized by X-ray photoelectron spectroscopy and temperature-programmed desorption of CO2. It was discovered that the excellent performance of δ-MnO2was ascribed to its high surface basicity from its high concentration of lattice oxygen on surface of MnO2, while the large amount of surface unsaturated coordination manganese also positively affected the catalytic performance of γ-MnO2.
KW - 1-butanamine
KW - CO
KW - Catalytic carbonylation
KW - MnO
KW - N,N′-dibutylurea
UR - http://www.scopus.com/inward/record.url?scp=85104053120&partnerID=8YFLogxK
U2 - 10.1016/j.jcou.2021.101525
DO - 10.1016/j.jcou.2021.101525
M3 - 文章
AN - SCOPUS:85104053120
SN - 2212-9820
VL - 48
JO - Journal of CO2 Utilization
JF - Journal of CO2 Utilization
M1 - 101525
ER -