Baodan Zhang
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Explore the profile of Baodan Zhang including associated specialties, affiliations and a list of published articles.
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26
Citations
65
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Recent Articles
1.
Zhu Y, Xu R, Zheng Y, Chen Y, Yin J, Xue J, et al.
Angew Chem Int Ed Engl
. 2025 Feb;
:e202502126.
PMID: 40017378
Developing sacrificial cathode prelithiation technology to compensate for irreversible lithium loss is crucial for enhancing the energy density of lithium-ion batteries. Antifluorite Li-rich LiFeO (LFO) is a promising prelithiation agent...
2.
Zhang K, Chen Y, Zhu Y, Zheng Q, Tang Y, Yu D, et al.
Angew Chem Int Ed Engl
. 2024 Nov;
64(7):e202419909.
PMID: 39606829
More and more basic practical application scenarios have been gradually ignored/disregarded, in fundamental research on rechargeable batteries, e.g. assessing cycle life under various depths-of-discharge (DODs). Herein, although benefit from the...
3.
Zou Y, Zhang B, Luo H, Yu X, Yang M, Zheng Q, et al.
Adv Mater
. 2024 Sep;
36(47):e2410261.
PMID: 39344860
Anode-free sodium metal batteries (AFSMBs) are regarded as the "ceiling" for current sodium-based batteries. However, their practical application is hindered by the unstable electrolyte and interfacial chemistry at the high-voltage...
4.
Luo H, Ji X, Zhang B, Chen M, Wu X, Zhu Y, et al.
Angew Chem Int Ed Engl
. 2024 Aug;
63(51):e202412214.
PMID: 39141606
Electrolyte engineering is crucial for improving cathode electrolyte interphase (CEI) to enhance the performance of lithium-ion batteries, especially at high charging cut-off voltages. However, typical electrolyte modification strategies always focus...
5.
Zhu Q, Chen B, Zhang F, Zhang B, Guo Y, Pang M, et al.
Front Nutr
. 2024 Aug;
11:1448388.
PMID: 39135557
Human exposure to heavy metals, which encompasses both essential and toxic varieties, is widespread. The intestine functions as a critical organ for absorption and metabolism of heavy metals. Gut microbiota...
6.
Zhang H, Xue J, Qin Y, Chen J, Wang J, Yu X, et al.
Small
. 2024 Aug;
20(46):e2406110.
PMID: 39113670
In this study, state-of-the-art on-line pyrolysis MS (OP-MS) equipped with temperature-controlled cold trap and on-line pyrolysis GC/MS (OP-GC/MS) injected through high-vacuum negative-pressure gas sampling (HVNPGS) programming are originally designed/constructed to...
7.
Chen Y, Zhu Y, Sun Z, Kuai X, Chen J, Zhang B, et al.
Adv Mater
. 2024 Jul;
36(36):e2407720.
PMID: 39032096
Compensating for the irreversible loss of limited active sodium (Na) is crucial for enhancing the energy density of practical sodium-ion batteries (SIBs) full-cell, especially when employing hard carbon anode with...
8.
Zhang B, Chen P, Zhu J, Lu Y
Int Immunopharmacol
. 2024 Apr;
133:111892.
PMID: 38663315
Background: Bladder cancer (BC), a prevalent malignancy in the urinary system, often poses challenges for effective treatment. Immunotherapy, harnessing the immune system, has exhibited promise in early-stage clinical trials. Mucosal...
9.
Zhang B, Wu X, Luo H, Yan H, Chen Y, Zhou S, et al.
J Am Chem Soc
. 2024 Feb;
146(7):4557-4569.
PMID: 38345667
Intelligent utilization of the anionic redox reaction (ARR) in Li-rich cathodes is an advanced strategy for the practical implementation of next-generation high-energy-density rechargeable batteries. However, due to the intrinsic complexity...
10.
Zhu Y, Chen Y, Chen J, Yin J, Sun Z, Zeng G, et al.
Adv Mater
. 2023 Dec;
36(13):e2312159.
PMID: 38117030
Developing sacrificial cathode prelithiation technology to compensate for active lithium loss is vital for improving the energy density of lithium-ion battery full-cells. LiCO owns high theoretical specific capacity, superior air...