Standout Papers
- Revealing the Maximum Strength in Nanotwinned Copper (2009)
- Heterogeneous lamella structure unites ultrafine-grain strength with coarse-grain ductility (2015)
- The morphology and crystallography of lath martensite in alloy steels (2006)
- Hardening by Annealing and Softening by Deformation in Nanostructured Metals (2006)
- Effect of block size on the strength of lath martensite in low carbon steels (2006)
- Strong crystal size effect on deformation twinning (2010)
- Strengthening mechanisms in nanostructured high-purity aluminium deformed to high strain and annealed (2009)
- The mechanism for the high dependence of the Hall-Petch slope for twinning/slip on texture in Mg alloys (2017)
- Tracking the sliding of grain boundaries at the atomic scale (2022)
- Ultrauniform, strong, and ductile 3D-printed titanium alloy through bifunctional alloy design (2024)
Immediate Impact
1 by Nobel laureates 68 from Science/Nature 212 standout
Citing Papers
Lean design of a strong and ductile dual-phase titanium–oxygen alloy
2025 Standout
Electroreduction-driven distorted nanotwins activate pure Cu for efficient hydrogen evolution
2025 Standout
Works of Xiaoxu Huang being referenced
Revealing the Maximum Strength in Nanotwinned Copper
2009 StandoutScience
Author Peers
| Author | Last Decade | Papers | Cites | |||
|---|---|---|---|---|---|---|
| Xiaoxu Huang | 12748 | 11936 | 4407 | 376 | 17.4k | |
| Surya R. Kalidindi | 11407 | 13072 | 8271 | 319 | 19.9k | |
| M.F. Horstemeyer | 7912 | 6256 | 4128 | 354 | 13.0k | |
| W.A. Curtin | 12539 | 10326 | 5963 | 289 | 20.1k | |
| David L. McDowell | 10252 | 9840 | 8270 | 359 | 16.5k | |
| Anthony D. Rollett | 12864 | 9823 | 5583 | 399 | 18.0k | |
| R.J. Asaro | 8470 | 9047 | 8043 | 156 | 14.5k | |
| Ricardo A. Lebensohn | 7161 | 7834 | 5980 | 228 | 12.1k | |
| Franz Roters | 8982 | 8546 | 6056 | 164 | 11.9k | |
| Tresa M. Pollock | 19019 | 9513 | 5229 | 428 | 23.5k | |
| Lallit Anand | 5972 | 6323 | 6006 | 138 | 13.4k |
All Works
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