Atomic Layer Deposition: Uniform and Size‐Controlled Synthesis of Pt Nanoparticle Catalyst by Fluidized Bed Reactor Atomic Layer Deposition for PEMFCs (Adv. Mater. Interfaces 21/2019)

Highly uniform Pt nanoparticles on the carbon supporter are constructed by fluidizing bed reactor atomic layer deposition system with efficient gas transfer, excellent mass production and time saving process. Well‐dispersed and size‐controllable Pt nanoparticles on the carbon exhibit the high electr...

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Veröffentlicht in:Advanced materials interfaces 2019-11, Vol.6 (21), p.n/a
Hauptverfasser: Lee, Woo‐Jae, Bera, Susanta, Shin, Heon‐Cheol, Hong, Woong‐Pyo, Oh, Seung‐Jeong, Wan, Zhixin, Kwon, Se‐Hun
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container_issue 21
container_start_page
container_title Advanced materials interfaces
container_volume 6
creator Lee, Woo‐Jae
Bera, Susanta
Shin, Heon‐Cheol
Hong, Woong‐Pyo
Oh, Seung‐Jeong
Wan, Zhixin
Kwon, Se‐Hun
description Highly uniform Pt nanoparticles on the carbon supporter are constructed by fluidizing bed reactor atomic layer deposition system with efficient gas transfer, excellent mass production and time saving process. Well‐dispersed and size‐controllable Pt nanoparticles on the carbon exhibit the high electrochemical surface area and excellent fuel cell performance for energy generation. More details can be found in article number 1901210 by Woo‐Jae Lee, Se‐Hun Kwon and co‐workers.
doi_str_mv 10.1002/admi.201970133
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source Wiley Blackwell Journals
subjects atomic layer deposition
Atomic layer epitaxy
Atomic properties
Carbon
Chemical synthesis
Fluidized bed reactors
Fluidized beds
Fuel cells
Mass production
Nanoparticles
Nuclear fuels
Nuclear reactors
particle size
Platinum
polymer electrolyte membrane fuel cells
Pt catalyst
Stability
title Atomic Layer Deposition: Uniform and Size‐Controlled Synthesis of Pt Nanoparticle Catalyst by Fluidized Bed Reactor Atomic Layer Deposition for PEMFCs (Adv. Mater. Interfaces 21/2019)
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