Zhuoya Deng, Pengfei Wang, Hojung Yun, Yuanyuan Liu, Nutthira Pakkang, G. Akceoglu, S. Chae, Yasuyuki Sawada, Nagahiro Saito
2026.1.5Applied Physics Express
Abstract
Encapsulation of Pt nanoparticles within single-walled carbon nanotubes (SWCNTs) is examined as a route to stabilizing sub-2 nm clusters. A sequential process—acid-reflux opening, solution-plasma reduction, and reductive annealing—yields uniform Pt filling. TEM confirms one-dimensional confinement, and XRD/XPS indicate metallic Pt with stabilized Pt2+/Pt0 states. EXAFS identifies Pt–C coordination unique to encapsulated Pt and absent in external Pt/SWCNT. Reactive-force-field molecular dynamics show confinement strengthens Pt–C bonding and suppresses Pt–Pt coalescence during thermal cycling. These results demonstrate SWCNTs as effective confinement hosts for constructing durable, quantum-confined electrocatalyst architectures.
Citation format
DENG, Zhuoya, et al. Unique pt–c coordination on inner SWCNT surfaces enhances stability of confined pt nanoparticles. Applied Physics Express, 2026, 19(2): 025001.