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1. 3D heterostructured pure and N-Doped Ni3S2/VS2 nanosheets for high.. [1539]
2. Vanadium disulfide decorated graphitic carbon nitride for super-ef.. [215]
3. Highly stable tungsten disulfide supported on a self-standing nick.. [152]
4. Design of pentagonal NbX monolayers for electronics and electrocat.. [76]
5. N and V Coincorporated Ni Nanosheets for Enhanced Hydrogen Evoluti.. [75]
6. Synergistic effect of 2D Ti2C and g-C3N4 for efficient photocataly.. [73]
7. Facile Synthesis of Vanadium-Doped Ni3S2 Nanowire Arrays as Active.. [68]
8. Vanadium self-intercalated C/V .. [68]
9. Effect of Curvature on the Hydrogen Evolution Reaction of Graphene [67]
10. A new ether-based electrolyte for lithium sulfur batteries using a.. [63]
11. Ultra-high electrocatalytic activity of VS2 nanoflowers for effici.. [62]
12. Electronic, magnetic, catalytic, and electrochemical properties of.. [60]
13. Strong ferromagnetism in hydrogenated monolayer MoS2 tuned by stra.. [60]
14. Multifunctional two-dimensional semiconductors SnP3: universal mec.. [57]
15. Network-Like Ni 1.. [57]
16. Carbonized MoS2: Super-Active Co-Catalyst for Highly Efficient Wat.. [57]
17. Defining the composition and electronic structure of large-scale a.. [56]
18. Cobalt‐Vanadium Hydroxide Nanoneedles with a Free‐Standing Struc.. [56]
19. Aqueous rechargeable dual-ion battery based on fluoride ion and so.. [55]
20. Efficient coupling of a hierarchical V2O5@Ni3S2 hybrid nanoarray f.. [55]
21. High-Performance Sodium-Ion Batteries Based on Nitrogen-Doped Meso.. [55]
22. Cross-linking of polymer and ionic liquid as high-performance gel .. [52]
23. Enhancement of Visible-Light Photocatalytic Hydrogen Production by.. [51]
24. Hierarchical Ultrafine Ni3V2O8 Nanoparticles Anchored on rGO as Hi.. [50]
25. High-performance supercapacitors based on superior Co3O4 nanorods .. [47]
26. Structural and Electronic Properties of Two-Dimensional Organic-in.. [46]
27. Efficient nitrogen fixation to ammonia on MXenes [46]
28. Single-crystal growth of metallic nanowires with preferred orienta.. [45]
29. Biopolymer-chitosan based supramolecular hydrogels as solid state .. [43]
30. Exploration of CPT violation via time-dependent geometric quantiti.. [43]
31. Electronic, Magnetic, and Catalytic Properties of Thermodynamicall.. [41]
32. A first-principles study on the hydrogen evolution reaction of VS2.. [41]
33. Two-Dimensional Janus Transition Metal Oxides and Chalcogenides: M.. [39]
34. Waved graphene: Unique structure for the adsorption of small molec.. [38]
35. Mechanism of insulator-to-metal transition in heavily Nb doped ana.. [38]
36. Effect of Doping on Hydrogen Evolution Reaction of Vanadium Disulf.. [35]
37. Hydrogenation-controlled phase transition on two-dimensional trans.. [35]
38. Geometric phase of two-qubit system in dephasing environment [33]
39. Magnetic and electronic evolutions of hydrogenated VTe 2 monolayer.. [32]
40. Exploring new two-dimensional monolayers: Pentagonal transition me.. [31]
41. N-Functionalized MXenes: Ultrahigh carrier mobility and multifunct.. [31]
42. Geometric phase carried by the observables and its application to .. [31]
43. Metal dichalcogenides monolayers: Novel catalysts for electrochemi.. [30]
44. Electronic properties and lithium storage capacities of two-dimens.. [30]
45. Geometric phase in inhomogeneous optical nutation [30]
46. Electronic properties of tin dichalcogenide monolayers and effects.. [30]
47. Transition of Bery Phase and Pancharatnam Phase and Phase Change [29]
48. Geometric phases and quantum correlations of superconducting two-q.. [28]
49. A First-Principles Study on the Structural and Electronic Properti.. [27]
50. Effects of non-metal dopants and defects on electronic properties .. [27]
51. Two-dimensional transition-metal oxide monolayers as cathode mater.. [27]
52. Tension-Enhanced Hydrogen Evolution Reaction on Vanadium Disulfide.. [27]
53. On the notch sensitivity of CuZr nanoglass [27]
54. Constructing metallic nanoroads on a MoS2 monolayer via hydrogenat.. [26]
55. Ab initio study on the effects of dopant-defect cluster on the ele.. [26]
56. Electronic and magnetic properties of vanadium dichalcogenides mon.. [25]
57. Motion center in quantum wave packet dynamics [25]
58. Nanotubes for energy storage [25]
59. Tension-Tailored Electronic and Magnetic Switching of 2D Ti2NO2 [24]
60. Phase-driven magneto-electrical characteristics of single-layer Mo.. [24]
61. Progress on the Theoretical Study of Two-Dimensional MoS2 Monolaye.. [24]
62. Anomalous friction of graphene nanoribbons on waved graphenes [24]
63. Fullerene/layered antiferromagnetic reconstructed spinterface: Sub.. [23]
64. Pancharatnam Phase and Quantum Correlation for Two-qubit System in.. [23]
65. Trapped ionic simulation of neutrino electromagnetic properties in.. [23]
66. Ultra-high electrochemical catalytic activity of MXenes [22]
67. Exploring an effective oxygen reduction reaction catalyst via 4e−.. [22]
68. Realization of Dirac Cones in Few Bilayer Sb(111) Films by Surface.. [21]
69. Ultra-Flexibility and Unusual Electronic, Magnetic and Chemical Pr.. [21]
70. Geometric phase and non-stationary state [20]
71. Perspective of Transition Metal Dichalcogenide Monolayers as Catal.. [20]
72. Ab initio design of nanostructures for solar energy conversion: a .. [19]
73. Graphitic carbon nitride nanotubes As Li-ion battery materials: A .. [18]
74. Pentagonal transition-metal (group X) chalcogenide monolayers: Int.. [17]
75. 2D materials: Excellent substrates for surface-enhanced Raman scat.. [16]
76. Investigation on the role of amines in the liquefaction and recrys.. [15]
77. Bandgap engineering of oxygen-rich TiO2+x for photocatalyst with e.. [14]
78. 1Tâ Transition-Metal Dichalcogenides: Strong Bulk Photovoltaic Ef.. [14]
79. Synergistic electronic and morphological modulation on ternary Co1.. [13]
80. Enhancing the Efficiency and Stability of NiOx-Based Silicon Photo.. [13]
81. Close-loop recycling of perovskite solar cells through dissolution.. [13]
82. WXy/g-C3N4 (WXy=W2C, WS2, or W2N) Composites for Highly Efficient .. [12]
83. Surface Reconstruction and Phase Transition on Vanadium–Cobalt–I.. [11]
84. MXenes: Novel electrocatalysts for hydrogen production and nitroge.. [11]
85. Co single-atom anchored on Co3O4 and nitrogen-doped active carbon .. [10]
86. Enhancement thermal stability of polyetherimide-based nanocomposit.. [9]
87. Designing Efficient Dual-Metal Single-Atom Electrocatalyst TMZnN6(.. [9]
88. Ultrafine WC1-x Nanocrystals: An Efficient Cocatalyst for the Sign.. [9]
89. Electronic state optimization for electrochemical N2reduction reac.. [8]
90. Reducing Oxygen Evolution Reaction Overpotential in Cobalt-Based E.. [8]
91. Development of Electrocatalysts for Efficient Nitrogen Reduction R.. [8]
92. Cavitation Erosion Damage Mechanism of a Duplex Stainless Steel Ha.. [7]
93. Enhanced N2-Fixation by Engineering the Edges of Two-Dimensional T.. [7]
94. Highly in-plane anisotropic 2D semiconductors β-AuSe with multipl.. [7]
95. Amorphous NiWO4 nanoparticles boosting the alkaline hydrogen evolu.. [6]
96. Two-step solvent post-treatment on PTAA for highly efficient and s.. [6]
97. Magnetic and electronic properties of 2D TiX3(X = F, Cl, Br and I) [6]
98. Ferroelectric control of single-molecule magnetism in 2D limit [6]
99. First-principles investigation of ScX2(X = Cl, Br, or I) monolayer.. [6]
100. Nitrogen-Doped Graphene Quantum Dots for Remarkable Solar Hydrogen.. [6]

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