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Emailjianli83@126.com;lijian@nwnu.edu.cn
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20076ڱպW@ùWTʿWλ20126пԺmݻ@ùWʿWλպWʿȻίuhҡWλuhҡҪ³ϡˮxϡlϡwxϵȷоևȻƌWĿȻӢ|̎𡢸Cʡܳ]ԭꄓ˲ӋĿCʡȻƌWcĿCʡУbI֧ӋЇʿƌWeYĿWЄF꠵ĿԵһͨӍChem. Eng. J., J. Membrane Sci., Green Chem., Sep. Purif. Technol., Macromolecules, J. Mater. Chem. A, ACS Appl. Mater. InterfacesڿlSCIՓ120ƪ, ESIcՓ10(WgIȫǰ0.1 %),ESI߱Փ20ƪ(WgIȫǰ1%)SCIՓı10010ƪƪ410ΣՓܱ5100ΣHָ492023@CʡȻƌWȪ(һ)2023@CƼ2019@CĪ£BmxӢʼһW“Top1%߱Ї”(2017-2020, 2022)Bmxȫ피ǰ10fƌWΡWՈˮxPӢČ1£ڇHҪWghՈ10Ρ
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ȻĿ (51872245)
ȻƌW (21301141)
Ӣ|̎ (161044)
Cʡܳ (18JR3RA083)
CʡȻƌWcĿ (23JRRA680)
CʡУҵ֧żƻĿ (2023CYZC-16)
ЇʿƌWeY (2018T110025)
ЇʿƌWһYĿ (2017M610031)
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]ԭꄓ˲ӋĿ (ʡίM)
CʡȻƌW (145RJYA241)
CʡߵѧУĿ (2014B-020)
mпƼӋĿ (2022-2-78)
“”ЄFĿ (NWNU-LKQN-16-6)
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CʡI܊˲(ڶӴ, 2023)
CʡȻƌWȪ(һ, 2023)
CƼ (11)
CĪ (2019)
Ӣ|̎(2018)
Cʡܳ(2018)
wWƸƻѧ(2019)
]ԭӢ(2022)
BmxӢʼһW“Top1%߱Ї”(2017-2020, 2022)
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CʡУ̎ɲŪ(2018)
Cʡ˶ʿՓָʦƺ(2017)
CʡߵѧУȪ(һ, 2016)
ʮ“ժ”CʡѧѧƼƷָʦ (ʡصȪ2019)
ھŌй“W+”WIָِ̎ (^𪄣2023)
ʦѧ´ҵָʦ(2016)
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1. Jian Li*, et al, High permeability PEG/MXene@MOF membrane with stable interlayer spacing and efficient fouling resistance for continuous oily wastewater purification, Journal of Membrane Science, 2024, 691, 122247. (SCIһ^, ĤxŞڿ).
2. Jian Li*, et al, Robust PVA/GO@MOF membrane with fast photothermal self-cleaning property for oily wastewater purification, Journal of Hazardous Materials, 2024, 462, 132803. (SCIһ^, TOPڿ).
3. Jian Li*, et al, Inverse desert beetle-like ZIF-8/PAN composite nanofibrous membrane for highly efficient separation of oil-in-water emulsions, Journal of Materials Chemistry A, 2021, 9, 4167–4175. (SCI^, ESI߱Փ).
4. Jian Li*, et al, A universal strategy for the preparation of dual superlyophobic surface in oil-water systems, ACS Applied Materials & Interfaces, 2021, 13, 14759–14767. (SCI^, ESIc&߱Փ).
5. Jian Li*, et al, Robust PVA-GO-TiO2 hierarchical membrane for efficient oil-in-water emulsions separation with stable flux, Journal of Membrane Science, 2021, 640, 119836. (SCIһ^, ESIc&߱Փ).
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1. Jian Li*, et al, Hexagonal boron nitride based slippery liquid infused porous surface with anti-corrosion, anti-contaminant and anti-icing properties for protecting Mg alloy, Chinese Chemical Letters, 2024, DOI: 10.1016/j.cclet.2023.109224. (SCIһ^, TOPڿ).
2. Jian Li*, et al, Slippery liquid-infused porous surface (SLIPS) with superior liquid repellency, anti-corrosion, anti-icing and intensified durability for protecting substrates, Chemical Engineering Journal, 2020, 410, 126137. (SCIһ^, ESIc&߱Փ).
3. Jian Li*, et al, Robust self-healing graphene oxide-based superhydrophobic coatings for efficient corrosion protection of magnesium alloy, ACS Applied Materials & Interfaces, 2022, 14, 30192−30204. (SCI^, ESI߱Փ).
4. Jian Li*, et al, Superhydrophobic ZIF-8 based dual-layer coating for enhanced corrosion protection of Mg alloy, ACS Applied Materials & Interfaces, 2020, 12, 35453–35463. (SCI^, ESI߱Փ).
5. Jian Li*, et al, Facile fabrication of graphene oxide and MOF-based superhydrophobic dual-layer coatings for enhanced corrosion protection on magnesium alloy, Applied Surface Science, 2022, 580, 152305. (SCI^, ESI߱Փ).
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1. Jian Li*, et al, Solar-driven interfacial evaporation for sustainable desalination: evaluation of current salt-resistant strategies, Chemical Engineering Journal, 2023, 474, 145945. (SCIһ^, TOPڿ).
2. Jian Li*, et al, Aligned attapulgite-based aerogels with excellent mechanical property for the high efficient solar steam generation, Separation and Purification Technology, 2021, 271, 118869. (SCIһ^, TOPڿ).
3. Jian Li*, et al, Interface solar evaporator synergistic phase change energy storage for all-day steam generation, Journal of Materials Chemistry A, 2022, 10, 15485–15496. (SCI^, TOPڿ).
4. Jian Li*, et al, Robust superhydrophilic attapulgite-based aligned aerogels for highly efficient and stable solar steam generation in harsh environments, Journal of Materials Chemistry A, 2021, 9, 23117–23126. (SCI^, TOPڿ).
5. Jian Li*, et al, A novel salt-rejecting linen fabric-based solar evaporator for stable and efficient water desalination under highly saline water, ACS Sustainable chemistry & engineering, 2020, 8, 11845–11852. (SCIһ^, TOPڿ).
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1. Jian Li*, et al, 1D-2D intercalated network CMC@g-C3N4/IL membrane with high permeability and selectivity for the CO2 capture, Journal of Membrane Science, 2023, 686, 122019. (SCIһ^, ĤxŞڿ).
2. Jian Li*, et al, Enhanced CO2 separation by functionalized g-C3N4 nanosheets as composite filler to fabricate mixed matrix membranes, Macromolecules, 2023, 56, 6461–6469. (SCIһ^, ߷Şڿ).
3. Jian Li*, et al, Pebax and CMC@MXene-based mixed matrix membrane with high mechanical strength for the highly efficient capture of CO2, Macromolecules, 2022, 55, 9851−9859. (SCIһ^, ߷Şڿ).
4. Jian Li*, et al, Efficient CO2 separation by ionic liquid nanoconfined in ultra-thin TCOH@Pebax-1657 MMM, Separation and Purification Technology, 2023, 325, 124667. (SCIһ^, TOPڿ).
5. Jian Li*, et al, Nanoconfined CO2-philic ionic liquid in laminated g-C3N4 membrane for CO2 separation, Separation and Purification Technology, 2022, 297, 121513. (SCIһ^, TOPڿ).

















