Z. Hao
7 Papers
2 Citations
Z. Hao is an academic researcher. The author has contributed to research in topics: Chemistry & Composite number. The author has an hindex of 2, co-authored 6 publications.
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Papers
Bridged Ti3C2TX MXene Film with Superior Oxidation Resistance and Structural Stability for High-Performance Flexible Supercapacitors
TL;DR: In this article , a facile strategy is proposed to address the challenging problems via oxygen-rich molecular bridging, which improves the interface electronic structure, thus enlarging the work function of pristine Ti3C2TX.
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Multiscale microstructures, mechanical properties and electrical conductivity of in-situ dual-size TiB2 particles reinforced 6201 aluminum matrix composites
K. Zhao,Xiang Hua Liu,Yuan X. Fang,E. Guo,Huijun Kang,Z. Hao,Jiehua Li,Guohao Du,Lei Liu,Zongning Chen,Tongmin Wang +10 more
TL;DR: In this paper , the authors used dual-size TiB2 particles into 6201 alloy to obtain out-bound mechanical properties with slight sacrifice of strength-ductility and strength-electrical conductivity.
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Processing defect, microstructure evolution and mechanical properties of laser powder bed fusion Al-12Si alloys
TL;DR: Laser power and scan speed significantly influence defects and microstructures in LPBF Al-12Si alloys, with optimal parameters yielding high relative density (>99.5%), fine microstructure, and superior mechanical properties (310 MPa yield strength, 470 MPa ultimate tensile strength).
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High-energy composite cathode for solid-state lithium-oxygen battery boosted by ultrafine carbon nanotube catalysts and amorphous lithium peroxide
Xiaoping Yi,X. Liu,B. Qin,XT Zhao,Kee Wah Leong,Wending Pan,Keling Jiang,Z. Hao,Dennis Y.C. Leung,Zu-Biao Wen +9 more
TL;DR: In this article , an ultrafine carbon nanotube (CNT) is developed as a cathode catalyst for SSLOBs, which unexpectedly improves the solid-solid contact issue with Li1·5Al0.5Ge1.5(PO4)3 (LAGP) solid electrolyte and provides a superior specific capacity of 5803 mAh/g (100 mA/g, 2.0-5.0 V vs. Li/Li+) in oxygen atmosphere that is about 4-5 times higher than that of SSLobs using CNTs with large diameters.
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Enhanced Proton Pseudocapacitive of Ti3C2Tx in neutral electrolyte activated by acid regulation dynamic pillars
Ran Ping,Yulin Nie,Chongkai Ji,Z. Hao,Shun Yang,Lijie Li,Jiong Peng,Xin Li +7 more
TL;DR: In this paper , a strategy of using Al3+ as dynamic acid regulation pillars is demonstrated to address the issues of low pseudocapacitance and slowly divalent charges in MXene nano sheets.
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