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Hu, X.; Huang, J.; Wei, Y.; Zhao, H.; Lin, S.; Hu, C.; Wang, Z.; Zhao, Z.; Zang, X.*; ”Laser Direct-Write Sensors on Carbon-fiber-reinforced Polyetheretherketone (CFR-PEEK) for Smart Orthopedic Implants”, Advanced Science, 2022, 202105499.
Zang, X.*; Dong, Y.; Jian, C.; Ferralis, N.; Grossman, J. C.; “Upgrading Carbonaceous Materials: Coal, Tar, Pitch, and Beyond”, Matter, 2022, 5, 430-447.
Zang, X.*; Ferralis, N.; Grossman, J. C.; “Electronic, structural, and magnetic upgrading of coal-based products through laser annealing ”, ACS Nano, 2022, 16, 2, 2101–2109.
Chen, W.; Gu, J.; Liu, Q.; Yang, M,; Zhan, C.; Zang, X.; Pham, T. A.; Liu, G.; Zhang, W.; Zhang, D.; Dunn,B.; Wang, Y. M.; ”Two-dimensional quantum-sheet films with sub-1.2 nm channels for ultrahigh-rate electrochemical capacitance”, Nature Nanotechnology, 2022, 17, 153–158.
Zang, X*; Wang, S.; Zhang, R.; “Ultra-thin Carbon Deficient Molybdenum Carbide (α-MoC1-x) Enables High-Rate Mg-ion Based Energy Storage”, Journal of Physical Chemistry Letters, 2021, 12, 4434-4439
Zang, X.; Tai, K.; Jian, C.; Shou, W.; Ferralis, N.*; Grossman, J. C.*; “Laser-Induced Tar-Mediated Sintering of Metals and Refractory Carbides in Air”, ACS Nano, 2020, 14, 10413.
Zang, X.; Jian, C.; Ingersoll, S.; Adams, J. J.; Li, H.; Lu, Z.; Ferralis, N.*; Grossman, J. C.*; “Laser Engineered Heavy Hydrocarbons: Old Materials with New Opportunities”, Science Advances, 2020, 6, eaaz5231.Reported by MIT News.
Zang, X.; Jian, C.; Zhu, T.; Fan, Z.; Wang, W.; Wei, M.; Li, B.;Mateo, F. D.; Ashby, P.; Lu, Z.; Chu, Y.; Wang, Z.; Ding, X.; Xie, Y; Chen, J. ;Hohman, J. N.; Sanghadasa, M.; Grossman, J.;Lin, L. ; “Laser-sculptured Two-Dimensional Transition Metal Carbides for Energy Storage and Energy Harvesting Applications ”, Nature Communication, 2019, 10 (1) 3112. Recommend by Editor in Energy Materials Focus.
Jian, C.; Merchant, S.; Zang, X.*; Ferralis, N.*; Grossman, C. J.*; “Structural Evolution of Small Aromatic Mixtures Under Extreme Temperature Conditions: Insights from ReaxFF Molecular Dynamics Investigations”, Carbon, 2019, 155, 309.
Morris, O. P.; Zang, X., Gregg, A.; Keller, B.; Getachew, B.; Ingersoll, S.; Elsen, H. A.; Disco, M. M.; Ferralis, N.; Grossman, J. C.; “Natural Carbon By-Product for Transparent Joule Heaters: The Case of Steam-Cracker Tar”, Advanced Materials, 2019, 1900331.
Zang, X.; Hohman, J. N.; Yao, K.; Ci. P.; Yan, A.; Wei, M.; Hayasaka, T.; Zettl, A; Schuck, J.; Wu, J.; Lin, L.; “Metallo-Hydrogel-Assisted Synthesis and Direct Writing of Transition Metal Disulfide”, Advanced Functional Materials, 2019, 1807612. Reported by Materials Views.
Zang, X.; Chen, W.; Zou, X.; Hohman, J. N.; Yang, L.; Li, B.; Wei, M.; Zhu, C.; Liang, J.; Sanghadasa, M.; Gu, J.; Lin, L.; “Self-assembly of Large-area Two-dimensional Polycrystalline Transition Metal Carbides for Hydrogen Electrocatalysis”, Advanced Materials, 30 (50), 1805188. Frontispieces; Highlighted by UC Berkeley News; Highlighted by UC Berkeley Engineering Magazine; Highlighted by Materials Today
Zang, X.; Shen, C.; Chu, Y.; Li, B.; Wei, M.; Zhong, J.; Sanghadasa, M.; Lin, L.; “Laser Induced Molybdenum Carbide-graphene Composites for 3D Foldable Paper Electronics”, Advanced Materials, 2018, 30 (26), 1800062, Frontispieces; Highlighted by AdvanedScienceNews; Highlighted by UC Berkeley College of Engineering News; Featured by Nature Photonics News
Zang, X.; Shen, C.; Kao, E.; Warren, R.; Zhang, R. ; Teh, K. S.; Zhong, J.; Wei, M.; Li, B.; Chu, Y.; Sanghadasa, M. ; Lin, L.; “Titanium Disulfide Coated Carbon Nanotube Hybrid Electrodes Enable High Energy Density Symmetric Pseudocapacitors,” Advanced Materials, 2018, 30 (5), 1704754. Highlighted by Molecular Foundry Research News; Highlighted by DOE Science News Source; Highlighted by UC Berkeley Mechancial Engineering News
Zang, X.; Shen, C.; Sanghadasa, M.; Lin, L.; “High Voltage Supercapacitor in Aqueous Electrolyte”, ChemElectroChem (invited review), 2019, 6(4), 976-988. Cover, ESI highly cited paper.
Zang, X.; Zhou, Q.; Chang, J.; Liu, Y.; Lin, L.,“Graphene and carbon nanotube (CNT) in MEMS/NEMS applications”. Microelectronic Engineering 2015, 132, 192-206. ESI highly cited paper