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42 results on '"Yanqing Jiao"'

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5. A dual-active Co-CoO heterojunction coupled with Ti3C2-MXene for highly-performance overall water splitting

7. Two‐Dimensional Porous Molybdenum Phosphide/Nitride Heterojunction Nanosheets for pH‐Universal Hydrogen Evolution Reaction

8. One-dimensional CO9S8-V3S4 heterojunctions as bifunctional electrocatalysts for highly efficient overall water splitting

9. 2D thin sheets composed of Co5.47N–MgO embedded in carbon as a durable catalyst for the reduction of aromatic nitro compounds

10. Genome-Wide Identification of

11. Porous Plate-like MoP Assembly as an Efficient pH-Universal Hydrogen Evolution Electrocatalyst

12. Ultrathin-layered MoS2 hollow nanospheres decorating Ni3S2 nanowires as high effective self-supporting electrode for hydrogen evolution reaction

13. Promoting the spatial charge separation by building porous ZrO2@TiO2 heterostructure toward photocatalytic hydrogen evolution

14. Three-dimensional assemblies of carbon nitride tubes as nanoreactors for enhanced photocatalytic hydrogen production

15. Porous cobalt/tungsten nitride polyhedra as efficient bifunctional electrocatalysts for overall water splitting

16. Vanadium‐Incorporated CoP 2 with Lattice Expansion for Highly Efficient Acidic Overall Water Splitting

17. Unraveling the mechanism for paired electrocatalysis of organics with water as a feedstock

18. Vanadium-Incorporated CoP

19. Facet-Dependent SnS Nanocrystals as the High-Performance Counter Electrode Materials for Dye-Sensitized Solar Cells

20. 3D hierarchical V–Ni-based nitride heterostructure as a highly efficient pH-universal electrocatalyst for the hydrogen evolution reaction

21. Genome-Wide Identification of TaSAUR Gene Family Members in Hexaploid Wheat and Functional Characterization of TaSAUR66-5B in Improving Nitrogen Use Efficiency

22. Porous Carbon Nitride Thin Strip: Precise Carbon Doping Regulating Delocalized π-Electron Induces Elevated Photocatalytic Hydrogen Evolution

23. In-situ chemical vapor deposition to fabricate Cuprous oxide/copper sulfide core-shell flowers with boosted and stable wide-spectral region photocatalytic performance

24. Interfacial Engineering of MoO

25. Synergism of molybdenum nitride and palladium for high-efficiency formic acid electrooxidation

27. Cobalt-vanadium bimetal-based nanoplates for efficient overall water splitting

28. Selenization of Cu2ZnSnS4 Enhanced the Performance of Dye-Sensitized Solar Cells: Improved Zinc-Site Catalytic Activity for I3–

29. Strongly coupled Ag/TiO2 heterojunctions for effective and stable photothermal catalytic reduction of 4-nitrophenol

30. Commercial ZnO and its hybrid with Ag nanoparticles: Photocatalytic performance and relationship with structure

31. Sequential two-step hydrothermal growth of MoS2/CdS core-shell heterojunctions for efficient visible light-driven photocatalytic H2 evolution

32. A general strategy toward the large-scale synthesis of the noble metal-oxide nanocrystal hybrids with intimate interfacial contact for the catalytic reduction of p-nitrophenol and photocatalytic degradation of pollutants

33. Promoting the spatial charge separation by building porous ZrO

34. Interfacial engineering of MoS2/MoN heterostructures as efficient electrocatalyst for pH-universal hydrogen evolution reaction

35. Hierarchical MoS2@MoP core–shell heterojunction electrocatalysts for efficient hydrogen evolution reaction over a broad pH range

36. A '1-methylimidazole-fixation' route to anchor small-sized nitrides on carbon supports as non-Pt catalysts for the hydrogen evolution reaction

37. Cluster-like molybdenum phosphide anchored on reduced graphene oxide for efficient hydrogen evolution over a broad pH range

38. Interfacial Engineering of MoO 2 ‐FeP Heterojunction for Highly Efficient Hydrogen Evolution Coupled with Biomass Electrooxidation

39. Selenization of Cu

40. Holey Reduced Graphene Oxide Coupled with an Mo

41. GO-induced assembly of gelatin toward stacked layer-like porous carbon for advanced supercapacitors

42. Holey Reduced Graphene Oxide Coupled with an Mo2 N-Mo2 C Heterojunction for Efficient Hydrogen Evolution

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