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Kaiqian Li

Explore the profile of Kaiqian Li including associated specialties, affiliations and a list of published articles. Areas
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Articles 7
Citations 18
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Recent Articles
1.
Li K, Xia T, Deng R, Dou Y, Wang J, Li Q, et al.
Small . 2024 Apr; 20(34):e2400760. PMID: 38566543
Industrial-level hydrogen production from the water electrolysis requires reducing the overpotential (η) as much as possible at high current density, which is closely related to intrinsic activity of the electrocatalysts....
2.
Li K, Zhang X, Huang X, Li X, Chang Q, Wang J, et al.
Environ Sci Pollut Res Int . 2024 Mar; 31(16):23924-23941. PMID: 38430437
In response to the escalating concerns over antibiotics in aquatic environments, the photo-Fenton reaction has been spotlighted as a promising approach to address this issue. Herein, a novel heterogeneous photo-Fenton...
3.
Li K, Xiong H, Wang X, Ma Y, Gao T, Liu Z, et al.
Inorg Chem . 2020 Mar; 59(7):5063-5071. PMID: 32186863
The designed synthesis of nanotwin architectures and thus-induced phase junctions expresses huge significance for semiconductor photocatalysts. However, current methods of producing nanotwins mainly involve high-temperature thermal treatment and tedious reaction...
4.
Xiong H, Gao T, Li K, Liu Y, Ma Y, Liu J, et al.
Adv Sci (Weinh) . 2019 Apr; 6(6):1801543. PMID: 30937257
Mesoporous metal oxides (MMOs) have attracted comprehensive attention in many fields, including energy storage, catalysis, and separation. Current synthesis of MMOs mainly involve use of surfactants as templates to generate...
5.
Wang T, Sun Y, Zhang L, Li K, Yi Y, Song S, et al.
Adv Mater . 2019 Mar; 31(16):e1807876. PMID: 30843288
The construction of refined architectures plays a crucial role in performance improvement and application expansion of advanced materials. The synthesis of carbon microspheres with a refined hierarchical structure is still...
6.
Liu Y, Gao T, Chen X, Li K, Ma Y, Xiong H, et al.
Inorg Chem . 2018 Oct; 57(20):12953-12960. PMID: 30277383
Here, we present a series of experimental studies to encapsulate ultrasmall gold nanoparticles into mesoporous metal oxide via an in situ self-assembly method. Notably, the 2.0Au@mZnO catalyst (∼2.0 nm gold...
7.
Ma Y, Zhang Y, Wang X, Fan M, Li K, Wang T, et al.
Nanoscale . 2018 Mar; 10(12):5731-5737. PMID: 29537010
With unique physical and chemical properties and porous architectures, mesoporous transition metal hydroxide (MMHO) and oxide (MMO) nanospheres hold great potential for various applications in drug delivery, catalysis, energy storage...