Yixin Xiao
Chemical Engineering · The Ohio State University
Publications
82
Citations
722
Est. group size
—
Recurring co-author estimate
Active years
32
Publishing since 1995
This researcher's publication record centers on high-temperature materials engineering, including thermal barrier coatings, ceramic materials, laser surface treatment techniques, and corrosion resistance of alloys and coatings. The work combines experimental studies with computational methods like molecular dynamics simulation and first-principles calculations to understand how material composition and processing affect properties such as wear resistance, thermal stability, and corrosion resistance. Note that some publications in this record appear unrelated to the core materials science focus, suggesting possible name overlap with other authors or interdisciplinary collaborations.
Publication output has grown notably over the last decade, rising from single digits annually before 2021 to 15-16 papers per year in 2024-2025.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Effect of laser shock peening on microstructure and wear resistance of 1Cr17Ni3A stainless steel
Optics & Laser Technology · 2026
- Multiscale microstructural regulation in ultrasonic-assisted laser repair of 30CrMnSiA
Ironmaking & Steelmaking Processes Products and Applications · 2026
- Enhanced thermophysical properties and CMAS corrosion resistance via multicomponent design: Developing a novel rare earth disilicate
Journal of Alloys and Compounds · 2025
- Microstructural evolution of FeCoNiCrMn high-entropy alloy subjected to laser shock peening: Molecular dynamics simulation study
Next Materials · 2025
- Intrinsic properties of dispersion-strengthened HfO <sub>2</sub>–Al <sub>2</sub>O <sub>3</sub>–SiO <sub>2</sub> material as an EBC bond coat
Journal of Advanced Ceramics · 2025
- CMAS corrosion behavior of laser-glazed LaYbZrCeO7/YSZ TBCs: Experimental and first-principles calculation
Ceramics International · 2025
- Ultra-fast laser modification of LaYbZrCeO7 thermal barrier coating surface and its hydrophobic behavior
Surface and Coatings Technology · 2025
- Effect of Yb <sup>3+</sup> –Ce <sup>4+</sup> content on mechanical, thermophysical, and CMAS resistance properties of La <sub>2−</sub> <i> <sub>x</sub> </i> Yb <i> <sub>x</sub> </i> Zr <sub>2−</sub> <i> <sub>x</sub> </i> Ce <i> <sub>x</sub> </i> O <sub>7</sub> ceramics
International Journal of Applied Ceramic Technology · 2025
- High-Temperature Oxidation Properties of Nano-HfO2-Doped NiCoCrAlY Coatings Prepared by Laser Cladding Technology
Journal of Thermal Spray Technology · 2025
- Feasible Exploration Study of Anti-Silicon Element Corrosion Coating for C/C Composites
Coatings · 2025
- Mechanical and thermophysical properties of Gd1.5Ln0.5Zr2O7 (Ln= Sm, Gd, Yb) ceramics: First-principles calculations and experimental study
Ceramics International · 2025
- Efficient and precious surface subsidence monitor using continuous InSAR data based on Kalman filter
2025
- CONSTRUCTION OF PEDOTRANSFER FUNCTION FOR PADDY SOIL BULK DENSITY BASED ON DIFFERENT GENETIC HORIZON
Applied Ecology and Environmental Research · 2025
- [Clinical analysis of 72 children with Langerhans cell histiocytosis].
PubMed · 2025
- Environment-driven dynamic reconfiguration of platinum catalysts: synergistic modulation of morphology, electronic states, and surface tension for enhanced activity
Applied Surface Science · 2025
- Vacuum×9
- Journal of Electronic Materials×6
- Ceramics International×5
- Journal of the American Ceramic Society×5
- SSRN Electronic Journal×5
- Krista M. Kulesa
Chemical Engineering · Indiana University
- Ruhan Wang
Chemical Engineering · Indiana University
- Sarah E. Braley
Chemical Engineering · Indiana University
- Haijun Su
Engineering · The Ohio State University
- Blake Barnett
Engineering · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
Claim or correct this profile