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1. Ion exchange synthesis of PAN/Ag3PO4 core-shell nanofibers with en.. [786]
2. TiO2 Nanotube Arrays Modified with Cr- Doped SrTiO3 Nanocubes for .. [760]
3. Morphology modulation of SrTiO3/TiO2 heterostructures for enhanced.. [718]
4. 金属纳米材料的尺寸和形貌可控合成及其催化性能研究 [571]
5. Fabrication of Ag3PO4–PAN composite nanofibers for photocatalytic.. [552]
6. Concave trisoctahedral Ag3PO4 microcrystals with high-index facets.. [511]
7. Visible-light-driven photoelectrochemical and photocatalytic perfo.. [498]
8. Enhanced photocatalytic activity of Ag/Ag3PO4 coaxial hetero-nanow.. [457]
9. Controllable Synthesis of Silver-Nanoparticle-Modified TiO2 Nanotu.. [431]
10. Photocatalytic and photoelectric properties of cubic Ag3PO4 sub-mi.. [412]
11. Selective Growth of Metallic Ag Nanocrystals on Ag3PO4 Submicro-Cu.. [404]
12. Vertically aligned ZnO nanowire arrays tip-grafted with silver nan.. [401]
13. Facile synthesis of hollow Ag@AgBr heterostructures with highly ef.. [375]
14. Highly efficient hydrogen production from formaldehyde over Ag/gam.. [367]
15. Two-dimensional dendritic Ag3PO4 nanostructures and their photocat.. [357]
16. New facile synthesis of one-dimensional Ag@TiO2 anatase core-shell.. [350]
17. Facile synthesis of tetrahedral Ag3PO4 submicro-crystals with enha.. [347]
18. Facile and Rapid Oxidation Fabrication of BiOCl Hierarchical Nanos.. [341]
19. 多晶X射线衍射-光催化联用原位表征分析系统(实用新型) [340]
20. Photo-directed growth of Au nanowires on ZnO arrays for enhancing .. [338]
21. Highly efficient hydrogen production from alkaline aldehyde soluti.. [320]
22. Enhanced photocatalytic properties of biomimetic Ag/AgCl heterostr.. [315]
23. Direct conversion of Bi nanospheres into 3D flower-like BiOBr nano.. [308]
24. Morphology-dependent activity of silver nanostructures towards the.. [307]
25. BiAg Alloy Nanospheres: A New Photocatalyst for H-2 Evolution from.. [282]
26. Highly ordered rectangular silver nanowire monolayers: water-assis.. [261]
27. Selective growth of Ag3PO4 submicro-cubes on Ag nanowires to fabri.. [259]
28. Control growth of uniform platinum nanotubes and their catalytic p.. [239]
29. Morphology-controlled preparation of silver nanocrystals and their.. [239]
30. Controlled synthesis of pentagonal gold nanotubes at room temperat.. [235]
31. Morphological controlled synthesis and catalytic activities of gol.. [221]
32. Iodide ions control galvanic replacement growth of uniform rhodium.. [203]
33. Nano-Cu catalyze hydrogen production from formaldehyde solution at.. [202]
34. Efficient generation of hydrogen from biomass without carbon monox.. [177]
35. Bi2MoO6 nanosheet array modified with ultrathin graphitic carbon n.. [171]
36. Tuning surface electronegativity of BiVO4 photoanodes toward high-.. [167]
37. 钡掺杂中空磷酸银光催化剂的选择性及稳定性(英文) [158]
38. Defect-rich and ultrathin CoOOH nanolayers as highly efficient oxy.. [149]
39. Direct Observation of Oxygen Vacancy Self-Healing on TiO2 Photocat.. [149]
40. Melamine-assisted to fabricate pure alpha-Fe2O3 polyhedron with hi.. [145]
41. Ultrathin FeOOH Nanolayers with Abundant Oxygen Vacancies on BiVO4.. [145]
42. Hierarchical Bi2MoO6 nanosheet-built frameworks with excellent pho.. [144]
43. Direct Observation of Charge Separation on Anatase TiO2 Crystals w.. [143]
44. High-crystalline and high-aspect-ratio hematite nanotube photoanod.. [140]
45. Facile Synthesis of Ag3PO4 Nanospheres with Enhanced Photocatalyti.. [138]
46. Facile synthesis of three-dimensional flower-like MoO2-graphene na.. [138]
47. Designing non-noble/semiconductor Bi/BiVO4 photoelectrode for the .. [136]
48. Ultrathin BiVO4 nanobelts: controllable synthesis and improved pho.. [135]
49. Novel composites of graphitic carbon nitride and NiO nanosheet arr.. [133]
50. Electric field-directed growth and photoelectrochemical properties.. [132]
51. Facile synthesis of platinum nanofiber/nanotube junction structure.. [131]
52. Efficient Charge Separation between Bi and Bi2MoO6 for Photoelectr.. [131]
53. The charge transfer mechanism of Bi modified TiO2 nanotube arrays:.. [131]
54. Facile synthesize alpha-MoO3 nanobelts with high adsorption proper.. [126]
55. 光照-X射线光电子能谱同步分析测试装置 [126]
56. Peculiar synergetic effect of MoS2 quantum dots and graphene on Me.. [122]
57. Engineering the surface atomic structure of FeVO4 nanocrystals for.. [121]
58. Ultrathin NiCo2O4 nanosheets with dual-metal active sites for enha.. [121]
59. Enhanced Solar Water Splitting by Swift Charge Separation in Au/Fe.. [119]
60. Synthesis of MFe2O4 (M = Ni, Co)/BiVO4 film for photolectrochemica.. [118]
61. Synergistic effects of SrTiO3 nanocubes and Ti3+ dual-doping for h.. [115]
62. One-pot synthesis of hierarchical Bi2S3-MoS2 nanosheet array with .. [115]
63. Efficient hydrogen production from MIL-53(Fe) catalyst-modified Mo.. [115]
64. Facile fabrication of BiVO4 nanofilms with controlled pore size an.. [114]
65. Bi2MoO6/BiVO4 heterojunction electrode with enhanced photoelectroc.. [114]
66. Fe/W Co-Doped BiVO4 Photoanodes with a Metal-Organic Framework Coc.. [113]
67. Ultra-thin TiO2 nanosheets decorated with Pd quantum dots for high.. [111]
68. Facile synthesis of porous Ag3PO4 photocatalysts with high self-st.. [110]
69. High-efficiency SrTiO3/TiO2 hetero-photoanode for visible-light wa.. [110]
70. Photo-controlled bond changes on Pt/TiO2 for promoting overall wat.. [110]
71. Dual Effects of Nanostructuring and Oxygen Vacancy on Photoelectro.. [108]
72. FeF2/BiVO4 heterojuction photoelectrodes and evaluation of its pho.. [108]
73. Facile growth of Bi2MoO6 nanosheet arrays on Ni foam as an electro.. [106]
74. Facile Fabrication of Network-Like Au/ZnO Nanowire Hetero-Arrays f.. [104]
75. Direct observation of dynamic interfacial bonding and charge trans.. [103]
76. Exfoliated thin Bi2MoO6 nanosheets supported on WO3 electrode for .. [102]
77. Remarkable enhancement on photoelectrochemical water splitting der.. [102]
78. Facile synthesis of Fe3+/Fe2+ self-doped nanoporous FeVO4 photoano.. [101]
79. In situ preparation of oxygen-deficient TiO2 microspheres with mod.. [98]
80. Spatial dual-electric fields for highly enhanced the solar water s.. [98]
81. Hierarchical nanosheet-based Bi2MoO6 nanotubes with remarkably imp.. [96]
82. Plasmon-induced hole-depletion layer on hematite nanoflake photoan.. [96]
83. One-dimensional hematite photoanodes with spatially separated Pt a.. [95]
84. Charge transmission channel construction between a MOF and rGO by .. [95]
85. Rapid activation of Co3O4 cocatalysts with oxygen vacancies on TiO.. [95]
86. Synergistic effects of P-doping and a MnO2 cocatalyst on Fe2O3 nan.. [89]
87. Bias-Free Solar-Driven Syngas Production: A Fe2O3 Photoanode Featu.. [88]
88. Efficient charge separation between Bi2MoO6 nanosheets and ZnO nan.. [87]
89. 多晶X射线衍射-光催化联用原位表征分析(发明) [87]
90. Direct Observation of Dynamic Bond Evolution in Single-Atom Pt/ C3.. [85]
91. Hematite dodecahedron crystals with high-index facets grown and gr.. [82]
92. Unveiling the Activity and Stability Origin of BiVO4 Photoanodes w.. [81]
93. ZnO nanowire arrays decorated with PtO nanowires for efficient sol.. [80]
94. Epitaxial growth of ZnWO4 hole-storage nanolayers on ZnO photoanod.. [80]
95. Synthesis of Ti3+ self-doped SrTiO3/TiO2 hetero-photoanodes with e.. [79]
96. The synergistic effect of Bi2WO6 nanoplates and Co3O4 cocatalysts .. [78]
97. Hematite Photoanodes: Synergetic Enhancement of Light Harvesting a.. [78]
98. High-Efficiency SrTiO3/TiO2 Hetero-Photoanode for Visible-Light Wa.. [78]
99. Relationship between interatomic electron transfer and photocataly.. [77]
100. Homostructural Ta3N5 nanotube/nanoparticle photoanodes for highly .. [77]

Downloads

1. Morphology modulation of SrTiO3/TiO2 heterostructures for enhanced.. [11]
2. Ion exchange synthesis of PAN/Ag3PO4 core-shell nanofibers with en.. [10]
3. 多晶X射线衍射-光催化联用原位表征分析系统(实用新型) [7]
4. Concave trisoctahedral Ag3PO4 microcrystals with high-index facets.. [6]
5. Electric field-directed growth and photoelectrochemical properties.. [6]
6. Synergistic effects of SrTiO3 nanocubes and Ti3+ dual-doping for h.. [6]
7. Morphology-dependent activity of silver nanostructures towards the.. [5]
8. Selective Growth of Metallic Ag Nanocrystals on Ag3PO4 Submicro-Cu.. [5]
9. Vertically aligned ZnO nanowire arrays tip-grafted with silver nan.. [5]
10. Controllable Synthesis of Silver-Nanoparticle-Modified TiO2 Nanotu.. [5]
11. Morphology-controlled preparation of silver nanocrystals and their.. [4]
12. Selective growth of Ag3PO4 submicro-cubes on Ag nanowires to fabri.. [4]
13. Visible-light-driven photoelectrochemical and photocatalytic perfo.. [4]
14. Facile synthesis of tetrahedral Ag3PO4 submicro-crystals with enha.. [4]
15. BiAg Alloy Nanospheres: A New Photocatalyst for H-2 Evolution from.. [4]
16. New facile synthesis of one-dimensional Ag@TiO2 anatase core-shell.. [4]
17. Enhanced photocatalytic properties of biomimetic Ag/AgCl heterostr.. [4]
18. Highly efficient hydrogen production from alkaline aldehyde soluti.. [4]
19. Direct conversion of Bi nanospheres into 3D flower-like BiOBr nano.. [4]
20. Melamine-assisted to fabricate pure alpha-Fe2O3 polyhedron with hi.. [4]
21. Synthesis of MFe2O4 (M = Ni, Co)/BiVO4 film for photolectrochemica.. [4]
22. Plasmon-induced hole-depletion layer on hematite nanoflake photoan.. [4]
23. Hematite dodecahedron crystals with high-index facets grown and gr.. [4]
24. Spatial dual-electric fields for highly enhanced the solar water s.. [4]
25. Highly ordered rectangular silver nanowire monolayers: water-assis.. [3]
26. Control growth of uniform platinum nanotubes and their catalytic p.. [3]
27. Two-dimensional dendritic Ag3PO4 nanostructures and their photocat.. [3]
28. Facile and Rapid Oxidation Fabrication of BiOCl Hierarchical Nanos.. [3]
29. Enhanced photocatalytic activity of Ag/Ag3PO4 coaxial hetero-nanow.. [3]
30. Fabrication of Ag3PO4–PAN composite nanofibers for photocatalytic.. [3]
31. TiO2 Nanotube Arrays Modified with Cr- Doped SrTiO3 Nanocubes for .. [3]
32. Photo-directed growth of Au nanowires on ZnO arrays for enhancing .. [3]
33. Highly efficient hydrogen production from formaldehyde over Ag/gam.. [3]
34. Ultra-thin TiO2 nanosheets decorated with Pd quantum dots for high.. [3]
35. Novel composites of graphitic carbon nitride and NiO nanosheet arr.. [3]
36. Bi2MoO6 nanosheet array modified with ultrathin graphitic carbon n.. [3]
37. Facile synthesis of Fe3+/Fe2+ self-doped nanoporous FeVO4 photoano.. [3]
38. FeF2/BiVO4 heterojuction photoelectrodes and evaluation of its pho.. [3]
39. Efficient generation of hydrogen from biomass without carbon monox.. [2]
40. 金属纳米材料的尺寸和形貌可控合成及其催化性能研究 [2]
41. Controlled synthesis of pentagonal gold nanotubes at room temperat.. [2]
42. Morphological controlled synthesis and catalytic activities of gol.. [2]
43. Photocatalytic and photoelectric properties of cubic Ag3PO4 sub-mi.. [2]
44. Facile synthesis of hollow Ag@AgBr heterostructures with highly ef.. [2]
45. Hierarchical Bi2MoO6 nanosheet-built frameworks with excellent pho.. [2]
46. Facile fabrication of BiVO4 nanofilms with controlled pore size an.. [2]
47. Direct Observation of Charge Separation on Anatase TiO2 Crystals w.. [2]
48. Efficient Charge Separation between Bi and Bi2MoO6 for Photoelectr.. [2]
49. Facile synthesis of porous Ag3PO4 photocatalysts with high self-st.. [2]
50. Facile synthesis of three-dimensional flower-like MoO2-graphene na.. [2]
51. 室温液相还原法制备纳米Pt/Al2O3催化剂及其催化性能的研究 [2]
52. Facile Fabrication of Network-Like Au/ZnO Nanowire Hetero-Arrays f.. [2]
53. Exfoliated thin Bi2MoO6 nanosheets supported on WO3 electrode for .. [2]
54. The charge transfer mechanism of Bi modified TiO2 nanotube arrays:.. [2]
55. The synergistic effect of Bi2WO6 nanoplates and Co3O4 cocatalysts .. [2]
56. High-efficiency SrTiO3/TiO2 hetero-photoanode for visible-light wa.. [2]
57. Relationship between interatomic electron transfer and photocataly.. [2]
58. Rapid activation of Co3O4 cocatalysts with oxygen vacancies on TiO.. [2]
59. ZnO nanowire arrays decorated with PtO nanowires for efficient sol.. [2]
60. Engineering the surface atomic structure of FeVO4 nanocrystals for.. [2]
61. Direct Observation of Oxygen Vacancy Self-Healing on TiO2 Photocat.. [2]
62. Iodide ions control galvanic replacement growth of uniform rhodium.. [1]
63. Facile synthesis of platinum nanofiber/nanotube junction structure.. [1]
64. Nano-Cu catalyze hydrogen production from formaldehyde solution at.. [1]
65. Facile synthesize alpha-MoO3 nanobelts with high adsorption proper.. [1]
66. 钡掺杂中空磷酸银光催化剂的选择性及稳定性(英文) [1]
67. Facile Synthesis of Ag3PO4 Nanospheres with Enhanced Photocatalyti.. [1]
68. Efficient charge separation between Bi2MoO6 nanosheets and ZnO nan.. [1]
69. Bi2MoO6/BiVO4 heterojunction electrode with enhanced photoelectroc.. [1]
70. 微乳法合成可控粒径纳米Pt/Al2O3电催化CO氧化的尺寸效应 [1]
71. 甲醇重整反应中Pt/γ-Al2O3 催化剂纳米Pt 粒径与催化性能关系研究 [1]
72. Fe/W Co-Doped BiVO4 Photoanodes with a Metal-Organic Framework Coc.. [1]
73. Ultrathin BiVO4 nanobelts: controllable synthesis and improved pho.. [1]
74. One-pot synthesis of hierarchical Bi2S3-MoS2 nanosheet array with .. [1]
75. Enhanced Solar Water Splitting by Swift Charge Separation in Au/Fe.. [1]
76. Peculiar synergetic effect of MoS2 quantum dots and graphene on Me.. [1]
77. Designing non-noble/semiconductor Bi/BiVO4 photoelectrode for the .. [1]
78. One-dimensional hematite photoanodes with spatially separated Pt a.. [1]
79. Charge transmission channel construction between a MOF and rGO by .. [1]
80. Efficient hydrogen production from MIL-53(Fe) catalyst-modified Mo.. [1]
81. Ultrathin FeOOH Nanolayers with Abundant Oxygen Vacancies on BiVO4.. [1]
82. Hematite Photoanodes: Synergetic Enhancement of Light Harvesting a.. [1]
83. Synergistic effects of P-doping and a MnO2 cocatalyst on Fe2O3 nan.. [1]
84. Remarkable enhancement on photoelectrochemical water splitting der.. [1]
85. High-Efficiency SrTiO3/TiO2 Hetero-Photoanode for Visible-Light Wa.. [1]
86. Defect-rich and ultrathin CoOOH nanolayers as highly efficient oxy.. [1]
87. Tuning surface electronegativity of BiVO4 photoanodes toward high-.. [1]
88. High-crystalline and high-aspect-ratio hematite nanotube photoanod.. [1]
89. Ultrathin NiCo2O4 nanosheets with dual-metal active sites for enha.. [1]
90. Photo-controlled bond changes on Pt/TiO2 for promoting overall wat.. [1]
91. High-performance and stable BiVO4 photoanodes for solar water spli.. [1]
92. Bias-Free Solar-Driven Syngas Production: A Fe2O3 Photoanode Featu.. [1]