32A Tender X-ray Absorption Spectroscopy Beamline

TXAS

32A Tender X-ray Absorption Spectroscopy Beamline

 

Publication list of 2025

  1. Exploring the Mechanism of Surface Cationic Vacancy Induces High Activity of Metastable Lattice Oxygen in Li- and Mn-Rich Cathode Materials. Angew. Chem. Int. Ed. LINK 
  2. Role of Bi Adatoms in Bi@Pd Nanoparticles for Electrochemical CO2 Reduction. ACS Nano. LINK
  3. Stepwise chemical-electrochemical cycles for decoupling modular biomass oxidation and hydrogen evolution. Chemical Engineering Journal. LINK
  4. Enabling high-performance and high-rate-capability Na4MnV(PO4)3 sodium-ion battery cathodes through tuning the NASICON framework.  J. Mater. Chem. A. LINK
  5. What impact does ammonia have on the microstructure of the precursor and the electrochemical performance of Ni-rich layered oxides?.  J. Mater. Chem. A. LINK
  6. Atomic Gap-State Engineering of MoS2 for Alkaline Water and Seawater Splitting. ACS Nano. LINK
  7. Tuning catalyst-support interactions enable steering of electrochemical CO2 reduction pathways. Science Advances. LINK
  8. Microenvironment Matters: Copper–Carbon Composites Enable a Highly Efficient Carbon Dioxide Reduction Reaction to C2 Products. ACS Appl. Mater. Interfaces. LINK
  9. Nitrogen-doping-induced electron spin polarization activates scandium oxide as high-performance zinc-air battery cathode. Journal of Colloid and Interface Science. LINK
  10. Size-effect induced controllable Cu0-Cu+ sites for ampere-level nitrate electroreduction coupled with biomass upgrading. Nat Commun. LINK
  11. The impact of willemite Zn2SiO4 phase in B1 to B2 type structural phase transformation in CdxZn1-xO composite thin films. Thin Solid Films. LINK
  12. Synergistic Mechanism for Unconventional Anodic Reaction of Aldehyde Oxidation for Hydrogen Production. Angew. Chem. Int. Ed. LINK
  13. Internal lattice oxygen sites invert product selectivity in electrocatalytic alkyne hydrogenation over copper catalysts. Nat Commun. LINK
  14. Triple-Phase Boundaries Enable Selective Urea Production From Simulated Flue Gas in a Zero-Gap Electrolyzer. Angew. Chem. Int. Ed. LINK
  15. Activating Lattice Oxygen in Perovskite Ferrite for Efficient and Stable Photothermal Dry Reforming of Methane. J. Am. Chem. Soc.  LINK

 

Publication list of 2024 

  1. Stable and Efficient Chlorine Evolution Reaction with Atomically Dispersed Ru on Surface Tensile Strained TiO2. Applied Catalysis B: Environment and Energy. LINK 
  2. Oxygen Vacancy Boosts Nitrogen-Centered Radical Coupling Initiated by Primary Amine Electrooxidation. Am. Chem. Soc. LINK
  3. Boosted Reverse Water-Gas Shift Activity via Exsolved Cu and Ni in Silicalite-1. Commun. LINK
  4. Manipulating C-C Coupling Pathway in Electrochemical CO2 Reduction for Selective Ethylene and Ethanol Production over Single-Atom Alloy Catalyst. LINK
  5. Crafting a Methanation-Resistant, Reverse Water–Gas Shift-Active Nickel Catalyst with Significant Nanoparticle Dimensions Using the Molten Salt Approach. ACS Sustainable Chem. Eng. LINK
  6. Sulfur Filling Activates Vacancy-Induced C–C Bond Cleavage in Polyol Electrooxidation. National Science Review. LINK
  7. Electronic and Atomic Structural Properties Associated with Enhanced Photodegradation Activity in Mo-Doped TiO2 Nanoparticles. Langmuir. LINK
  8. Biomass-Derived Porous Carbon with Single-Atomic Cobalt toward High-Performance Aqueous Zinc-Sulfur Batteries at Room Temperature. Journal of Energy Chemistry. LINK
  9. Suppression of Adverse Phase Transition of Layered Oxide Cathode via Local Electronic Structure Regulation for High-Capacity Sodium-Ion Batteries. ACS Nano. LINK
  10. Dual-Vacancy-Engineered ZnIn2S4 Nanosheets for Harnessing Low-Frequency Vibration Induced Piezoelectric Polarization Coupled with Static Dipole Field to Enhance Photocatalytic H2 Evolution. Advanced Materials. LINK
  11. Direct Identification of O─O Bond Formation Through Three-Step Oxidation During Water Splitting by Operando Soft X-Ray Absorption Spectroscopy. Advanced Science. LINK
  12. Tuning of Oxygen Vacancies in Co3O4 Electrocatalyst for Effectiveness in Urea Oxidation and Water Splitting. LINK
  13. High Entropy Induced Local Charge Enhancement Promotes Frank–Van Der Merwe Growth for Dendrite-Free Potassium Metal Batteries. Advanced Functional Materials. LINK

 

Publication list of 2021

  1. "Design of Tender X-ray Absorption Spectroscopy Beamline in Taiwan Photon Source." Journal of Physics: Conference Series. (2022). p. 012041.
  2. "Reducing the thermal deformation of InSb crystal by using double-bounce HHRMs in the TPS tender X-ray absorption spectroscopy beamline." Journal of synchrotron radiation 28.4 (2021): 1202-1209.
  3. 柔 X 光譜出科學新篇章-動態電子結構解析." 真空科技 34.4 (2021): 21-26.
  4. 國家同步輻射研究中心 118期簡訊 –柔X光的終極挑戰:熱情

 

 

Find a Beamline

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Specifications

Endstations

Staff

BL Schedule

Optical Layout

Techniques

Publications

Gallery


 Contacts

Endstation

—+886-3-578-0281 Ext. 2321

BL Spokesperson

Chen, Chi-Liang (陳啟亮)
chen.cl@nsrrc.org.tw
+886-3-578-0281 Ext. 7306

BL Manager/Local Contact

Lu, Ying-Rui (盧英睿)
lu.yr@nsrrc.org.tw
+886-3-578-0281 Ext. 3379

Po-Yang Peng (彭柏洋)
peng.py@nsrrc.org.tw
+886-3-578-0281 Ext. 7368


Techniques

  • X-ray absorption Spectroscopy (XAS)
  • X-ray absorption fine structures Spectroscopy (XAFS)
  • Micro X-ray Fluoreccence Microscopy (μXFM)
  • Tender X-ray Photoelectron Spectroscopy (TXPS)

Disciplines

  • Materials science
  • Environment and energy related research
  • Physics
  • Nanomaterials
  • Energy materials
  • Geoscience
  • Chemistry
  • Nanotechnology
  • Condensed matter physics
  • Electronic excitations of strongly correlated electron systems
  • Functional materials
  • Photovoltaic materials
  • Electron-correlated materials
  • Low dimension materials

General Information

  • Source: Bending Magnet (BM)
  • Energy Range: 0.3*0.62 mm2 (Micro-beam: 5*5 μm2)
  • Focused Spot Size: 0.3*0.62 mm2 (Micro-beam: 5*5 μm2)
  • Status: Under Commissioning







National Synchrotron Radiation Research Center

101 Hsin-Ann Road, Hsinchu Science Park, Hsinchu, Taiwan 30076

+886-3-578-0281