In Situ Construction of Co-MoS 2 /Pd Nanosheets on Polypyrrole-Derived Nitrogen-Doped Carbon Microtubes as Multifunctional Catalysts with Enhanced Catalytic Performance
The structural design of multiple functional components could integrate synergistic effects to enhance the catalytic performance of MoS -based composites for catalytic applications. Herein, one-dimensional (1D) Co-MoS /Pd@NCMTs composites were designed to prepare Co-doped MoS /Pd nanosheets (NSs) on...
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Veröffentlicht in: | Inorganic chemistry 2022-01, Vol.61 (1), p.542-553 |
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Hauptverfasser: | , , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The structural design of multiple functional components could integrate synergistic effects to enhance the catalytic performance of MoS
-based composites for catalytic applications. Herein, one-dimensional (1D) Co-MoS
/Pd@NCMTs composites were designed to prepare Co-doped MoS
/Pd nanosheets (NSs) on N-doped carbon microtubes (NCMTs) from tubular polypyrrole (PPy) as multifunctional catalysts. The Co-MoS
/Pd@NCMTs composites integrated the synergistic effects of Co-doping, a 1D tubular structure, and noble-metal Pd decoration. Thus, a higher catalytic activity was observed in 4-nitrophenol (4-NP) reduction and peroxidase-like catalysis than other components, such as MoS
, MoS
@NCMTs, and Co-MoS
@NCMTs. Remarkably, the results indicated that the dissolution, diffusion, and redistribution led to the dissolution of MoO
@ZIF-67 cores and generation of Co-doped MoS
NSs. Benefiting from the synergistic effect from these components, Co-MoS
/Pd@NCMTs were considered as a facile colorimetric sensing platform for detecting tannic acid. Moreover, outstanding performance was realized in the reduction of 4-NP with the composites. Thus, we provide a simple synthetic strategy for simultaneously integrating electronic engineering and structural advantages to develop an efficient MoS
-based multifunctional catalyst. |
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ISSN: | 0020-1669 1520-510X |
DOI: | 10.1021/acs.inorgchem.1c03228 |