Gram-scale synthesis of active and durable oxygen reduction reaction PtFe or PtNi catalyst using commercial polystyrene상용 폴리스타이렌 기반 고활성 고내구성 산소환원반응 백금-니켈 및 백금-철 촉매의 그램 단위 합성법 개발

Cited 0 time in webofscience Cited 0 time in scopus
  • Hit : 190
  • Download : 0
PEMFC, that can convert hydrogen to energy in mild operating condition of 80oC, is key technology of green energy. Large amount of Pt is used in cathode due to its high overpotential. Alloying Pt with transition metal and encapsulating the alloy nanoparticle to prevent metal leaching strategies have reported high activity and durability with reduced Pt usage. However, the synthesis scale was too small or too complex. Thus, this research used commercial polystyrene and impregnated Pt through ball mill to synthesize carbon encapsulating nanoparticle electrocatalyst in gram scale. The Pt deposited on the support existed as 2~3nm cluster or larger alloy nanoparticles with high dispersion. By testing half cell activity with various contents of Fe, Ni and Pt, maximum mass activity was found to be 0.82 A/mgPt and 0.57 A/mgPt for PtFe/cPS and PtNi/cPS. After 10 000 cycles, both PtFe/cPS and PtNi/cPS retained over 70% of initial activity, confirming the enhanced durability by encapsulation. The performance was lacking at single cell, but by enhancing single cell activity through reducing the support particle size, the research would contribute to commercialization of fuel cell.
Advisors
Lee, Hyunjooresearcher이현주researcher
Description
한국과학기술원 :생명화학공학과,
Publisher
한국과학기술원
Issue Date
2023
Identifier
325007
Language
eng
Description

학위논문(석사) - 한국과학기술원 : 생명화학공학과, 2023.2,[iv, 30 p. :]

Keywords

electrocatalyst▼afuel cell▼aoxygen reduction reaction▼acarbon shell▼ahigh activity▼ahigh durability; 전기촉매▼a연료전지▼a산소환원반응▼a탄소막▼a고활성▼a고내구성

URI
http://hdl.handle.net/10203/308898
Link
http://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=1032770&flag=dissertation
Appears in Collection
CBE-Theses_Master(석사논문)
Files in This Item
There are no files associated with this item.

qr_code

  • mendeley

    citeulike


rss_1.0 rss_2.0 atom_1.0