34 results on '"Feng, Shuaijun"'
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2. Surface plasmon resonance effects of Ti3C2 MXene for degradation of antibiotics under full spectrum
3. Dual Localized Surface Plasmon Resonance effect enhances Nb2AlC/Nb2C MXene thermally coupled photocatalytic reduction of CO2 hydrogenation activity
4. Localized surface plasmon resonance effect of V4C3-MXene for enhancing photothermal reduction of CO2 in full solar spectrum
5. Up–conversion and Landau damping effect of Ni1–xNdx(OH)2/Ti3C2 to improve the selectivity of thermal coupled photocatalytic reduction of CO2
6. Full-spectrum broad-spectrum degradation of antibiotics by BiVO4@BiOCl crystal plane S-type and Z-type heterojunctions
7. Mo-modified (t-m)-ZrO2 with narrowed band gap and strong ability to activate reactants for photocatalytic CO2 reduction
8. The enhanced photocatalytic activity of Z-scheme CuBi2O4−x/Bi2O2−xCO3 heterojunction towards tetracycline under visible and near-infrared light
9. Local surface plasmon resonance promotion of photogenerated electrons to hot electrons for enhancing photothermal CO2 hydrogenation over Ni(OH)2/Ti3C2 catalysts
10. Preparation of exposed (001) facets TiO2/Ti3C2 MXene and performance of near infrared light photodegradation
11. Cs0.33WO3/(t-m)-BiVO4 double Z-type heterojunction photothermal synergistic enhanced full-spectrum degradation of antibiotics
12. Stable LSPR effect and full-spectrum photocatalytic water purification by g-C3N4−x/MoO3−x with passivated interface oxygen vacancies
13. Construction of Ag/NaBiO3 with dual active sites for photocatalytic NO deep oxidation and long-lasting organic pollutants degradation in the dark
14. Defects and internal electric fields synergistically optimized g-C3N4−x/BiOCl/WO2.92 heterojunction for photocatalytic NO deep oxidation
15. Design of Community Rehabilitation Service System and APP for Cerebral Stroke Elderly
16. Facile synthesis of Mo-doped TiO2 for selective photocatalytic CO2 reduction to methane: Promoted H2O dissociation by Mo doping
17. Photocatalytic toluene degradation over Bi-decorated TiO2: Promoted O2 supply to catalyst’s surface by metallic Bi
18. Intrinsic Polarized Electric Field Induces a Storing Mechanism to Achieve Energy Storing Catalysis in V2C MXene
19. Intrinsic Polarized Electric Field Induces a Storing Mechanism to Achieve Energy Storing Catalysis in V2C MXene.
20. Weighted weak estimate for commutators of fractional Marcinkiewicz integrals over non-homogeneous metric spaces
21. Mo-Modified (T-M)-Zro2 with Narrowed Band Gap and Strong Ability to Activate Reactants for Photocatalytic Co2 Reduction
22. Interface Electric Field and Crystal Intrinsic Polarization Electric Field Enhance the Broad-Spectrum Energy Storage Catalytic Activity of S-Type Biobr@Bi2o2(Co3)1-Xnx Heterojunction
23. Localized Surface Plasmon Resonance Effect Of V4c3-Mxene for Enhancing Photothermal Reduction of Co2 in Full Solar Spectrum
24. Surface Plasmon Resonance Effect of Ti3c2 Mxene For Degradation of Antibiotics Under Full Spectrum
25. Preparation of exposed (001) facets TiO2/Ti3C2 MXene and performance of near infrared light photodegradation
26. Surface Plasmon Effect of Ti3c2 Mxene and Degradation of Antibiotics Under Full Spectrum
27. Lspr Effect Induced Energy Transfer Enhances the Photothermal Conversion of Co2 Over Ni(Oh)2/Ti3c2 Catalyst
28. Lspr Promotion of Photogenerated Electrons to Hot Electrons for Enhancing Photothermal Co2 Conversion Over Ni(Oh)2/Ti3c2 Catalysts
29. Preparation of Exposed (001) Crystal Plane Tio2/Ti3c2 Mxene and Enhanced Full Spectrum Degradation of Antibiotics
30. Light-driven thermocatalytic CO2 reduction over surface-passivated β-Mo2C nanowires: enhanced catalytic stability by light
31. Light-driven thermocatalytic CO2 reduction over surface-passivated β-Mo2C nanowires: enhanced catalytic stability by light
32. Facile synthesis of Mo-doped TiO2for selective photocatalytic CO2reduction to methane: Promoted H2O dissociation by Mo doping
33. Light-driven thermocatalytic CO2 reduction over surface-passivated β-Mo2C nanowires: enhanced catalytic stability by light.
34. Intrinsic Polarized Electric Field Induces a Storing Mechanism to Achieve Energy Storing Catalysis in V 2 C MXene.
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