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Trapping mobile Pt species by PdO in diesel oxidation catalysts: Smaller is better

논문 개요

기관명, 저널명, ISSN, ISBN 으로 구성된 논문 개요 표입니다.
기관명 NDSL
저널명 Catalysis today
ISSN 0920-5861,1873-4308
ISBN

논문저자 및 소속기관 정보

저자, 소속기관, 출판인, 간행물 번호, 발행연도, 초록, 원문UR, 첨부파일 순으로 구성된 논문저자 및 소속기관 정보표입니다
저자(한글) Xiong, H.,Peterson, E.,Qi, G.,Datye, A.K.
저자(영문)
소속기관
소속기관(영문)
출판인
간행물 번호
발행연도 2016-01-01
초록 Pt is an active catalyst for treatment of diesel exhaust emissions but is known to sinter and form large particles under oxidizing conditions. Pd is added to suppress the sintering of Pt and improve the performance of the Pt catalysts through the formation of a Pt-Pd alloy. In a previous study, using model catalysts, we demonstrated that mobile Pt species can diffuse on the surface and get trapped on PdO particles, leading to the formation of metallic Pt-Pd alloys in flowing air at 650 o C. In this work we explore the implications of this trapping phenomenon to powder catalysts. We physically mixed Pt/MgAl 2 O 4 and PdO/La-Al 2 O 3 catalyst powders and aged them at 800 o C in air. Mobile Pt species emitted from the Pt/MgAl 2 O 4 migrated through the vapor phase and were trapped by PdO nanoparticles located on the La-Al 2 O 3 support. Since the Pt moved from the MgAl 2 O 4 support to the PdO, we infer that PdO is better at trapping Pt than the MgAl 2 O 4 support. We also investigated the effect of PdO particle size on the trapping efficiency for Pt. It was found that small PdO particles were more effective, leading to smaller size of Pt-Pd particles as confirmed by electron microscopy, X-ray diffraction and reactivity for methane oxidation.
원문URL http://click.ndsl.kr/servlet/OpenAPIDetailView?keyValue=03553784&target=NART&cn=NART75723440
첨부파일

추가정보

과학기술표준분류, ICT 기술분류,DDC 분류,주제어 (키워드) 순으로 구성된 추가정보표입니다
과학기술표준분류
ICT 기술분류
DDC 분류
주제어 (키워드) Diesel oxidation catalyst,Bimetallic Pt-Pd,Trapping Pt,Particle size effect