LICP OpenIR  > 羰基合成与选择氧化国家重点实验室(OSSO)
Nitrogen-doped cobalt nanocatalysts for carbonylation of propylene oxide
Department羰基合成与选择氧化国家重点实验室(OSSO)
Zeng B(曾波); Chen L(陈林); Zhu G(朱刚利); Yang B(杨冰筱); Xia C(夏春谷); He L(何林)
The second department均相催化-1
2020-07-13
Source PublicationMolecular Catalysis 494 (2020) 111109
Volume494Issue:10Pages:111109
Abstract

Nitrogen-doped cobalt nanoparticles loaded on porous supports were developed for ring-opening carbonylation
of propylene oxide. The catalysts were prepared by simply pyrolysis of Co(OAc)2/phenanthroline and supports.
As proved by XPS combined with XRD and TEM characterizations, a higher amount of available Co-N sites were
responsible for promoting the carbonylative activity. The selectivity of carbonylated products reached 93 %,
which is comparable to previously reported cobalt carbonyl catalysts. The novel type of carbonylative catalyst
also could be reused and revealed fine stability due to the continuous generation of active [Co(CO)4]species
during reaction.

KeywordCarbonylation,Cobalt, Nanocatalysts,Supported,Propylene oxide
Subject Area催化化学
MOST Discipline Catalogue理学::化学
DOI10.1016/j.mcat.2020.111109
URL查看原文
Indexed BySCI
If3.687
Language英语
compositor第一作者单位
Citation statistics
Cited Times:6[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.licp.cn/handle/362003/26764
Collection羰基合成与选择氧化国家重点实验室(OSSO)
Corresponding AuthorZeng B(曾波)
AffiliationState Key Laboratory for Oxo Synthesis and Selective Oxidation, Suzhou Research Institute of LICP, Lanzhou Institute of Chemical Physics (LICP)
Recommended Citation
GB/T 7714
Zeng B,Chen L,Zhu G,et al. Nitrogen-doped cobalt nanocatalysts for carbonylation of propylene oxide[J]. Molecular Catalysis 494 (2020) 111109,2020,494(10):111109.
APA Zeng B,Chen L,Zhu G,Yang B,Xia C,&He L.(2020).Nitrogen-doped cobalt nanocatalysts for carbonylation of propylene oxide.Molecular Catalysis 494 (2020) 111109,494(10),111109.
MLA Zeng B,et al."Nitrogen-doped cobalt nanocatalysts for carbonylation of propylene oxide".Molecular Catalysis 494 (2020) 111109 494.10(2020):111109.
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