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Wei Chen

Researcher at Chinese Academy of Sciences

Publications -  38
Citations -  3424

Wei Chen is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Carbon nanotube & Catalysis. The author has an hindex of 18, co-authored 37 publications receiving 3112 citations. Previous affiliations of Wei Chen include Central South University & King Abdullah University of Science and Technology.

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Enhanced ethanol production inside carbon-nanotube reactors containing catalytic particles

TL;DR: A striking enhancement of the catalytic activity of Rh particles confined inside nanotubes for the conversion of CO and H2 to ethanol within carbon and other nanotube systems is reported.
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Effect of confinement in carbon nanotubes on the activity of Fischer-Tropsch iron catalyst.

TL;DR: It is demonstrated here how this can affect the catalytic reactivity of iron catalysts in Fischer-Tropsch synthesis (FTS), using in situ XRD under conditions close to the reaction conditions, that the distribution of iron carbide and oxide phases is modulated in the CNT-confined system.
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Tuning of redox properties of iron and iron oxides via encapsulation within carbon nanotubes.

TL;DR: Tunable redox behavior of transition metal nanoparticles inside CNTs is attributed to a particular electronic interaction of the encapsulates with the interior CNT surface, which stabilizes the metallic state of Fe.
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Enhanced capacitance of manganese oxide via confinement inside carbon nanotubes

TL;DR: The confinement within carbon nanotubes improves the electrochemical reversibility of CNT-confined MnO(2) nanoparticles and benefits their capacitive enhancement, which exhibit a specific capacitance of 225 F g(-1) for the composites and MnO (2) normalized capacitance as high as 1250 F g (-1).
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Facile autoreduction of iron oxide/carbon nanotube encapsulates.

TL;DR: Facile autoreduction of iron oxide encapsulated within carbon nanotubes has been observed at a temperature 200 degrees C lower than those on the outer surface, opening a new route to tune the state of confined nanoparticles of d-band metals by the confinement of CNTs.