Investigating Degradation Mechanisms in PtCo Alloy Catalysts: The Role of Co Content and a Pt-Rich Shell Using Operando High-Energy Resolution Fluorescence Detection X-ray Absorption Spectroscopy

被引:9
作者
Gao, Yunfei [1 ]
Thakur, Neha [1 ]
Uchiyama, Tomoki [1 ]
Cao, Weijie [1 ]
Yamamoto, Kentaro [1 ]
Watanabe, Toshiki [1 ]
Kumar, Mukesh [1 ]
Sato, Ryota [2 ]
Teranishi, Toshiharu [2 ]
Imai, Hideto [3 ]
Sakurai, Yoshiharu [4 ]
Uchimoto, Yoshiharu [1 ]
机构
[1] Kyoto Univ, Grad Sch Human & Environm Studies, Kyoto 6068501, Japan
[2] Kyoto Univ, Inst Chem Res, Uji, Kyoto 6110011, Japan
[3] Fuel Cell Cutting Edge Res Ctr Technol Res Assoc, Koto, Tokyo 1350064, Japan
[4] Japan Synchrotron Radiat Res Inst JASRI, Sayo, Hyogo 6795198, Japan
关键词
proton-exchange membrane fuel cells; oxygen reductionreaction; PtCo catalysts; core-shell; stability; operando X-ray absorption spectroscopy; OXYGEN REDUCTION REACTION; FUEL-CELLS; PLATINUM; NANOPARTICLES; ADSORPTION; ELECTROCATALYSTS; BIMETAL; PEFC;
D O I
10.1021/acsami.3c11248
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Low Pt-based alloy catalysts are regarded as an efficient strategy in achieving high activity for the oxygen reduction reaction (ORR) in proton-exchange membrane fuel cells (PEMFCs). However, the desired durability for the low Pt-based catalysts, such as the Pt1Co3 catalyst, has still been considered a great challenge for PEMFCs. In this study, we investigate sub-2.5 nm PtxCoy alloy catalysts with varying Co content and Pt1Co3@Pt core-shell (CS) nanostructure catalysts obtained through a simple displacement reaction. The Pt1Co3@Pt_H catalysts showed a high mass activity (MA) of 1.46 A/mg(Pt) at 0.9 V and 14% MA loss after 10k accelerated degradation test (ADT) cycles, which suggested the improved stability compared with Pt1Co3 catalysts (52% MA loss). To clarify the degradation mechanism, operando high-energy resolution fluorescence detection X-ray absorption spectroscopy (XAS) was applied in addition to conventional advanced measurement techniques, including operando conventional XAS, to analyze the electronic state and structure changes during operation potentials. We found that introducing Co improves the catalysts' activity mainly from the strain effect, but an excessive amount of Co leads to increased Pt-oxidation, which accelerates the degradation of the catalysts. The Pt1Co3@Pt_H catalyst shows high tolerance to Pt-oxidation, benefiting both the stability and activity. Our findings demonstrate an in-depth understanding of the degradation mechanism and the importance of designing PtCo CS nanostructures with optimal Co content for enhanced performance in PEMFCs.
引用
收藏
页码:52473 / 52484
页数:12
相关论文
共 58 条
[1]   Potential Dependence of Pt and Co Dissolution from Platinum-Cobalt Alloy PEFC Catalysts Using Time-Resolved Measurements [J].
Ahluwalia, Rajesh K. ;
Papadias, Dionissios D. ;
Kariuki, Nancy N. ;
Peng, Jui-Kun ;
Wang, Xiaoping ;
Tsai, Yifen ;
Graczyk, Donald G. ;
Myers, Deborah J. .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2018, 165 (06) :F3024-F3035
[2]   Ultra-Low Pt Loading in PtCo Catalysts for the Hydrogen Oxidation Reaction: What Role Do Co Nanoparticles Play? [J].
Anaya-Castro, Felipe de Jesus ;
Beltran-Gastelum, Mara ;
Morales Soto, Omar ;
Perez-Sicairos, Sergio ;
Lin, Shui Wai ;
Trujillo-Navarrete, Balter ;
Paraguay-Delgado, Francisco ;
Salazar-Gastelum, Luis Javier ;
Romero-Castanon, Tatiana ;
Reynoso-Soto, Edgar ;
Felix-Navarro, Rosa Maria ;
Salazar-Gastelum, Moises Israel .
NANOMATERIALS, 2021, 11 (11)
[3]   Investigation into the Competitive and Site-Specific Nature of Anion Adsorption on Pt Using In Situ X-ray Absorption Spectroscopy [J].
Arruda, Thomas M. ;
Shyam, Badri ;
Ziegelbauer, Joseph M. ;
Mukerjee, Sanjeev ;
Ramaker, David E. .
JOURNAL OF PHYSICAL CHEMISTRY C, 2008, 112 (46) :18087-18097
[4]   Disentangling the Degradation Pathways of Highly Defective PtNi/C Nanostructures - An Operando Wide and Small Angle X-ray Scattering Study [J].
Asset, Tristan ;
Gommes, Cedric J. ;
Drnec, Jakub ;
Bordet, Pierre ;
Chattot, Raphael ;
Martens, Isaac ;
Nelayah, Jaysen ;
Job, Nathalie ;
Maillard, Frederic ;
Dubau, Laetitia .
ACS CATALYSIS, 2019, 9 (01) :160-167
[5]   Break-In Bad: On the Conditioning of Fuel Cell Nanoalloy Catalysts [J].
Chattot, Raphael ;
Roiron, Camille ;
Kumar, Kavita ;
Martin, Vincent ;
Roldan, Carlos Augusto Campos ;
Mirolo, Marta ;
Martens, Isaac ;
Castanheira, Luis ;
Viola, Arnaud ;
Bacabe, Remi ;
Cavaliere, Sara ;
Blanchard, Pierre-Yves ;
Dubau, Laetitia ;
Maillard, Frederic ;
Drnec, Jakub .
ACS CATALYSIS, 2022, 12 (24) :15675-15685
[6]   Oxygen Reduction Kinetics on Pt Monolayer Shell Highly Affected by the Structure of Bimetallic AuNi Cores [J].
Chen, Guangyu ;
Kuttiyiel, Kurian A. ;
Su, Dong ;
Li, Meng ;
Wang, Chiu-Hui ;
Buceta, David ;
Du, Chunyu ;
Gao, Yunzhi ;
Yin, Geping ;
Sasaki, Kotaro ;
Vukmirovic, Miomir B. ;
Adzic, Radoslav R. .
CHEMISTRY OF MATERIALS, 2016, 28 (15) :5274-5281
[7]   Pt-Co Electrocatalysts: Syntheses, Morphologies, and Applications [J].
Chen, Hao ;
Liu, Jianwen ;
Wu, Xuexian ;
Ye, Chunyi ;
Zhang, Jiujun ;
Luo, Jing-Li ;
Fu, Xian-Zhu .
SMALL, 2022, 18 (40)
[8]   High Energy Resolution Fluorescence Detection of the Pt L3,2-Edge Whitelines of Pt-Based Bimetallic Systems: Implications for the Pt 5d5/2,3/2 Density of States [J].
Chen, Jiatang ;
Finfrock, Y. Zou ;
Wang, Zhiqiang ;
Sham, Tsun-Kong .
JOURNAL OF PHYSICAL CHEMISTRY C, 2021, 125 (04) :2327-2333
[9]   Subsize Pt-based intermetallic compound enables long-term cyclic mass activity for fuel-cell reduction [J].
Cheng, Han ;
Gui, Renjie ;
Yu, Hao ;
Wang, Chun ;
Liu, Si ;
Liu, Hongfei ;
Zhou, Tianpei ;
Zhang, Nan ;
Zheng, Xusheng ;
Chu, Wangsheng ;
Lin, Yue ;
Wu, HengAn ;
Wu, Changzheng ;
Xie, Yi .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2021, 118 (35)
[10]   Atomic Rearrangement in Core-Shell Catalysts Induced by Electrochemical Activation for Favorable Oxygen Reduction in Acid Electrolytes [J].
Choi, Daeil ;
Jung, Jae Young ;
Lee, Myeong Jae ;
Kim, Seung-hoon ;
Lee, Sehyun ;
Lee, Dong Wook ;
Kim, Dong-gun ;
Kim, Nam Dong ;
Lee, Kug-Seung ;
Kim, Pil ;
Yoo, Sung Jong .
ACS CATALYSIS, 2021, 11 (24) :15098-15109