Welcome to Hard X-ray MicroAnalysis (HXMA) beamline
Our energy range is 5-40 KeV.
We specialize in XAFS.
How To Access HXMA Beamline
- User registration or log in? Login
- Learn about current HXMA capabilities Here
- Already Registered? Learn how to Submit a Proposal
- For sample shipping, please find the Shipping Details
Quicklinks
- Applying for Beam Time
- Graduate and Post-Doctral Student Travel Support ( Check application deadline)
- Submit publication and acknowledging the CLS
List of Publications »
- Eslami, Reza; Jalab, Rem; Irannezhad, Ashkan; Teimouri, Zahra; Rakhsha, Amirhossein et al. (2027). Hierarchically porous dual-metal iron/nickel-nitrogen-carbon catalyst for high-rate CO2-to-CO conversion in a zero-gap electrolyzer. Applied Catalysis B: Environmental 400, 127178. 10.1016/j.apcatb.2026.127178.
- Kong, Lingyi; Shrimpton, Heather K.; Eagling, Jane; Chen, Ning; Finfrock, Y. Zou et al. (2026). Removal of dissolved zinc using zero-valent iron: Aqueous geochemistry, XANES, and EXAFS analyses. Applied Geochemistry 210, 107091. 10.1016/j.apgeochem.2026.107091.
- Li, Chaozhong; Shao, Yijia; Xie, Zixuan; Zhu, Jinming; Wang, Jing et al. (2026). Dual-Site Engineering Enables Strong Metal–Support Electronic Interactions for Superior Pt3– x Ir x Co/bd-NMC Intermetallic Fuel Cell Composite Catalysts. ACS Sustainable Chemistry and Engineering . 10.1021/acssuschemeng.6c05352.
Latest News »
- Research Highlight: Sulfur promoted Fe/N/C as highly efficient oxygen electrocatalyst for Zn-air batteries
- Research Highlight: Roles of biogenic birnessite in controlling the mobility of heavy metals
- Research Highlight: Role of bifunctional catalysts for high performance Na-O2 batteries.
- Research Highlight: Characterization of iron and sulfur in coal waste rock, Elk Valley, British Columbia, Canada.
- Research Highlight: Enhance performance of P3HT:PCBM photovoltaic cells