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10. Amorphous RuO2 Catalyst for Medium Size Carboxylic Acid to Alkane Dimer Selective Kolbe Electrolysis in an Aqueous Environment.

11. Manganese Doping in Cobalt Oxide Nanorods Promotes Catalytic Dehydrogenation

19. MoS2-catalyzed selective electrocatalytic hydrogenation of aromatic aldehydes in an aqueous environment.

22. Manganese doping in cobalt oxide nanorods promotes catalytic dehydrogenation

23. Engineering Electronic Structure of Single-Atom Pd Site on Ti 0.87 O 2 Nanosheet via Charge Transfer Enables C-Br Cleavage for Room Temperature Suzuki Coupling

25. Manganese Doping in Cobalt Oxide Nanorods Promotes Catalytic Dehydrogenation

30. Correction: Boosting the activity of catalytic oxidation of 5-hydroxymethylfurfural to 2,5-diformylfuran over nitrogen-doped manganese oxide catalysts

31. Boosting the activity of catalytic oxidation of 5-hydroxymethylfurfural to 2,5-diformylfuran over nitrogen-doped manganese oxide catalysts

35. New Approach for Controllable Synthesis of N-MnOxMicroflowers and Their Superior Catalytic Performance for Benzoxazole Synthesis

37. Design and synthesis of a highly efficient heterogeneous MnCo2O4oxide catalyst for alcohol oxidation: DFT insight into the synergistic effect between oxygen deficiencies and bimetal speciesQ. Ke was supported by the Anhui Provincial Science Fund for Excellent Young Scholars (gxyqZD2018034). This work was supported by the National Science Foundation of China (grant numbers 21476001, 21776002, 21306142). The authors acknowledge Shenzhen HUASUAN Technology Co., Ltd for providing theory computation support.Electronic supplementary information (ESI) available: Experimental section, and NMR. See DOI: 10.1039/c8cy02248h

44. Oil/Water Separation Performances of Superhydrophobicand Superoleophilic Sponges.

46. Amorphous RuO 2 Catalyst for Medium Size Carboxylic Acid to Alkane Dimer Selective Kolbe Electrolysis in an Aqueous Environment.

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