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Hongwei Mi

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Articles 35
Citations 93
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Recent Articles
1.
Lin Z, Wang Y, Chen M, Zhu J, Xie Z, Yang M, et al.
ACS Nano . 2025 Mar; PMID: 40032582
Layered transition metal oxides are some of the most attractive cathode candidates for sodium-ion batteries (SIBs). The main challenge of achieving superior storage performance is to simultaneously boost the ion...
2.
Yin R, Zhang Z, Shi C, Li J, Luo Z, Hu J, et al.
ACS Appl Mater Interfaces . 2024 Oct; 16(44):60142-60150. PMID: 39465906
For exploiting high-energy lithium-metal batteries, it is of utmost importance to develop electrolytes that possess exceptional ionic conductivity and an extensive electrochemical stability range. In this study, 3D PAN nanofibers...
3.
Zhang G, Xu Y, Zhang P, He C, Mi H
ACS Nano . 2024 Oct; 18(42):29294-29303. PMID: 39397776
Abundant defect-induced nonradiative recombination greatly reduces the charge separation efficiency in photocatalysts. Dielectric screening of defects has been proven to be an effective strategy to improve the charge separation efficiency;...
4.
Qiu B, Xu F, Huang J, Wu Y, Huang K, Gao J, et al.
Nano Lett . 2024 Jul; 24(29):8872-8879. PMID: 38989682
Parlous structure integrity of the cathode and erratic interfacial microdynamics under high potential take responsibility for the degradation of solid-state lithium metal batteries (LMBs). Here, high-voltage LMBs have been operated...
5.
Gong Y, Zhang P, Fan S, Cai M, Hu J, Luo Z, et al.
J Colloid Interface Sci . 2024 Mar; 664:168-177. PMID: 38460381
Ammonium vanadate with stable bi-layered structure and superior mass-specific capacity have emerged as competitive cathode materials for aqueous rechargeable zinc-ion batteries (AZIBs). Nevertheless, fragile NH…O bonds and too strong electrostatic...
6.
Li H, Zhang G, Zhang P, Mi H
ChemSusChem . 2024 Feb; 17(12):e202301849. PMID: 38316609
The construction of heterojunctions is challenging, requiring atomic-level contact and interface matching. Here, we have achieved atomic-level interfacial matching by constructing poly(heptazine imide)/poly(triazine imide) crystalline carbon nitride heterojunctions in an...
7.
Ma D, Zhao Z, Wang Y, Yang X, Yang M, Chen Y, et al.
Adv Mater . 2023 Nov; 36(4):e2310336. PMID: 38009638
Transition metal chalcogenide (TMD) electrodes in sodium-ion batteries exhibit intrinsic shortcomings such as sluggish reaction kinetics, unstable conversion thermodynamics, and substantial volumetric strain effects, which lead to electrochemical failure. This...
8.
Yang M, Wang Y, Ma D, Zhu J, Mi H, Zhang Z, et al.
Angew Chem Int Ed Engl . 2023 May; 62(27):e202304400. PMID: 37158757
Sluggish storage kinetics and insufficient performance are the major challenges that restrict the transition metal dichalcogenides (TMDs) applied for zinc ion storage, especially at the extreme temperature conditions. Herein, a...
9.
Zhu Q, Yang G, Tang L, Mi H, Sun L, Zhang Q, et al.
Nanotechnology . 2023 Mar; 34(22). PMID: 36857776
Oxygen evolution reaction (OER) is a necessary procedure in various devices including water splitting and rechargeable metal-air batteries but required a higher potential to improve oxygen evolution efficiency due to...
10.
Zeng Z, Zeng Y, Sun L, Mi H, Deng L, Zhang P, et al.
Nanoscale . 2023 Jan; 15(5):2435. PMID: 36656034
Correction for 'Long cyclic stability of acidic aqueous zinc-ion batteries achieved by atomic layer deposition: the effect of the induced orientation growth of the Zn anode' by Zhisen Zeng ,...