Signature of metal–metal bonding in Ir–Ni–Ta–(B) bulk metallic glasses
Abstract
In bulk metallic glasses, minimizing the total electronic energy is a key factor in glass formation. However, it remains unclear how this energy is minimized, particularly in metallic glasses made up of transition metal elements. In this study, we use synchrotron-based photoemission spectroscopy to investigate the electronic structure of Ir–Ni–Ta–(B) bulk metallic glasses, which are primarily composed of transition metals and have recently been discovered to exhibit exceptional glass-forming ability. We observe distinct chemical shifts in the core levels of Ir and Ta in opposite directions, while the Ni is close to an elemental-like state, suggesting significant Ir–Ta charge transfer and metal–metal bonding in the metallic glass phase. Additionally, a pseudogap at EF suggests an additional contribution from the itinerant electrons to the glass-forming ability, but likely playing a secondary role as it is only observed in Ir35Ni20Ta40B5. Our findings highlight the critical role of metal–metal bonding in facilitating the glass formation of metallic glasses composed of transition metals.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (11)
Suppanut Sangphet
Laboratory of Advanced Materials, State Key Laboratory of Surface Physics, and Department of Physics, Fudan University 1 , Shanghai 200438,
Xiaoyang Chen
Chihao Li
Laboratory of Advanced Materials, State Key Laboratory of Surface Physics, and Department of Physics, Fudan University 1 , Shanghai 200438,
Nan Guo
Xiang Ding
Mingxing Li
Yanhui Liu
Rui Peng
Haichao Xu
Laboratory of Advanced Materials, State Key Laboratory of Surface Physics, and Department of Physics, Fudan University 1 , Shanghai 200438,
Wei-Hua Wang
Donglai Feng
School of Emerging Technology and Department of Physics, University of Science and Technology of China 5 , Hefei 230026,