Anping Ji
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Explore the profile of Anping Ji including associated specialties, affiliations and a list of published articles.
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6
Citations
16
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Recent Articles
1.
Ji A, Zhou L, Xiao Q, Liu J, Huang W, Yu Y, et al.
Molecules
. 2025 Jan;
30(1.
PMID: 39795247
The ionic conductance in a charged nanopore exhibits a power-law behavior in low salinity-as has been verified in many experiments (G0∝c0α)-which is governed by surface charges. The surface charge inside...
2.
Luo J, Ji A, Xia G, Liu L, Yan J
Molecules
. 2024 Apr;
29(7).
PMID: 38611888
In this study, sodium alginate/chitosan/halloysite nanotube composites were prepared by three-dimensional printing and characterized in terms of morphology, viscosity, thermal properties, and methylene blue (MB) adsorption performance. The high specific...
3.
Luo J, Xia G, Liu L, Ji A, Luo Q
Foods
. 2023 Jul;
11(20).
PMID: 37431032
In this study, a bilayer antibacterial chromogenic material was prepared using chitosan (CS) and hydroxyethyl cellulose (HEC) as inner substrate, mulberry anthocyanins (MA) as a natural tracer, and titanium dioxide...
4.
Ji A, Wang B, Xia G, Luo J, Deng Z
Nanomaterials (Basel)
. 2022 Nov;
12(22).
PMID: 36432237
Many experimental studies have proved that ion dynamics in a single-digit nanopore with dimensions comparable to the Debye length deviate from the bulk values, but we still have critical knowledge...
5.
Ji A, Chen Y
RSC Adv
. 2022 Apr;
11(23):13806-13813.
PMID: 35423930
The ion transport behavior through sub-nm nanopores (length () ≈ radius ()) on a film is different from that in nanochannels ( ≫ ), and even more different from the...
6.
Luo J, Wang H, Zuo D, Ji A, Liu Y
Micromachines (Basel)
. 2018 Dec;
9(12).
PMID: 30513580
As an advanced manufacturing technology that has been developed in recent years, three-dimensional (3D) printing of macromolecular materials can create complex-shaped components that cannot be realized by traditional processing. However,...
7.
Ji A, Zhang Y, Lv G, Lin J, Qi N, Ji F, et al.
J Labelled Comp Radiopharm
. 2017 Dec;
61(4):362-369.
PMID: 29247459
For the purpose of providing new insights for high-efficiency radiochemotherapy of hepatoma, a radioimmunotherapy and chemotherapy combinatorial therapy albumin nanospheres I-antiAFPMcAb-DOX-BSA-NPs was designed and prepared. It was obtained in a...