1. M. Yan#, C.L. Hu#, S.F. Tang*, H.M. Cheng et al., An unusual carbon-ceramic composite with gradients in composition and porosity delivering outstanding thermal protection performance up to 1900 °C, Adv. Funct. Mater., 2022, 32: 2204133. IF=19.9.
2. M. Yan, C.L. Hu*, S.F. Tang* et al., Construction of a ceramic coating with low residual stress on C/CA composites for thermal protection at ultra-high temperatures, Compos. Part B-Eng., 2023, 266: 110970. IF=13.1.
3. W. W. Zhang#, C.L. Hu#, S.F. Tang* et al., Insight into the origin of oxidation behaviors of carbon fiber reinforced carbon aerogel composites with different porous skeletons, Carbon, 2023, 209: 118008. IF=10.9.
4. P.J. Tang#, C.L. Hu#, L. Wang*, S.F. Tang* et al., Self-densification behavior, interfacial bonding and cyclic ablation resistance of HfSi2-ZrSi2 modified SiC/ZrB2-SiC/SiC coating for Cf/ SiC composite, Corros. Sci., 2023, 219: 111223. IF=8.3.
5. P.J. Tang#, C.L. Hu#, L. Wang*, S.F. Tang* et al., Interfacial modification and cyclic ablation behaviors of a SiC/ZrB2-SiC/SiC triple-layer coating for C/SiC composites at above 2000 °C, Corros. Sci., 2020, 169:108604. IF=8.3.
6. C.L. Hu, S.F. Tang*, H.M. Cheng et al., Long-term oxidation behaviors of C/SiC composites with a SiC/UHTC/SiC three-layer coating in a wide temperature range, Corros. Sci., 2019, 147:1-8. IF=8.3.
7.C.L. Hu, S.Y. Pang, S.F. Tang*, S.J. Wang, H.T. Huang, H.-M. Cheng. Ablation and mechanical behavior of a sandwich-structured composite with an inner layer of Cf/SiC between two outer layers of Cf/SiC–ZrB2–ZrC, Corros. Sci., 2014, 80: 154-163, IF=8.3.
8. C.L. Hu, S.Y. Pang, S.F. Tang*, Z. Yang, S.J. Wang, H.-M. Cheng, Long-term oxidation behavior of carbon/carbon composites with a SiC/B4C–B2O3–SiO2 –Al2O3 coating at low and medium temperatures, Corros. Sci., 2015,94: 452-458. IF=8.3.
9. S.F. Tang*, C.L. Hu*,Design, Preparation and Properties of Carbon Fibers Reinforced Ultra-High Temperature Ceramic Composites for Aerospace Applications: a Review,J. Mater. Sci. Technol., 2016, 33:117-130. IF=10.9.
10. C.L. Hu#, R.D.Zhao#, S.F. Tang* et al., Deposition kinetics and mechanism of pyrocarbon for electromagnetic-coupling chemical vapor infiltration process, J. Mater. Sci. Technol., 2022, 101: 118–127. IF=10.9.