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总访问量

3988

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1. All-Inorganic Quantum-Dot LEDs Based on a Phase-Stabilized α-CsPb.. [4308]
2. Direct and Indirect Recombination and Thermal Kinetics of Excitons.. [416]
3. Chiral CdSe nanoplatelets as an ultrasensitive probe for lead ion .. [346]
4. High-Performance Blue Perovskite Light-Emitting Diodes Enabled by .. [245]
5. Microcavity Laser Based on Cholesteric Liquid Crystal Doped With R.. [244]
6. Tuning an Electrode Work Function Using Organometallic Complexes i.. [238]
7. Strong band filling induced significant excited state absorption i.. [234]
8. Sb-Induced Phase Control of InAsSb Nanowires Grown by Molecular Be.. [227]
9. Proton Conducting Polyoxometalate/Polypyrrole Films and Their Humi.. [224]
10. Optically pumped lasing with a Q-factor exceeding 6000 from wet-et.. [223]
11. Zn doped MAPbBr3 single crystal with advanced structural and optic.. [207]
12. Stabilizing n-Type hetero-junctions for NiO: X based inverted plan.. [204]
13. Plasmonically Enhanced Upconversion Luminescence via Holographical.. [200]
14. In Situ Growth of All‐Inorganic Perovskite Single Crystal Arrays .. [199]
15. Recent progress on two-dimensional layered materials for surface e.. [198]
16. Facile Synthesis and Controllable Emission of Tm3+/Er3+-Doped and .. [195]
17. Simultaneous Low-Order Phase Suppression and Defect Passivation fo.. [192]
18. Low-threshold, single-mode, and linearly polarized lasing from all.. [180]
19. Preparation of Aluminum Nanomesh Thin Films from an Anodic Aluminu.. [179]
20. Improved Optical Property and Lasing of ZnO Nanowires by Ar Plasma.. [174]
21. Surface modification of all-inorganic halide perovskite nanorods b.. [172]
22. Water-soluble chiral CdSe/CdS dot/rod nanocrystals for two-photon .. [167]
23. Linear and nonlinear optical characteristics of all-inorganic pero.. [165]
24. Effective Surface Ligand-Concentration Tuning of Deep-Blue Lumines.. [165]
25. Optical characteristics of GaAs/GaAsSb/GaAs coaxial single quantum.. [163]
26. Efficient Inverted Perovskite Solar Cells Enabled by Dopant-Free H.. [163]
27. Temperature dependent optical characteristics of all-inorganic CsP.. [161]
28. Interfacial-Field-Induced Increase of the Structural Phase Transit.. [159]
29. Structural phase transitions and photoluminescence mechanism in a .. [159]
30. A "turn-on" fluorescence sensor for Pb2+ detection based on graphe.. [157]
31. Ternary FePSe3 Atomic Layers with Competitive Temperature Coeffici.. [157]
32. Surface-Related Exciton and Lasing in CdS Nanostructures [152]
33. Two-stage metal ion sensing by through-space and through-bond char.. [152]
34. Dopant-Free Hole Transporting Molecules for Highly Efficient Perov.. [148]
35. Electrostatic energy harvesting device with dual resonant structur.. [147]
36. Design and chiroptical properties of a water-soluble and violet-bl.. [144]
37. Low-Threshold Amplified Spontaneous Emission in Blue Quantum Dots .. [144]
38. Stable, Strongly Emitting Cesium Lead Bromide Perovskite Nanorods .. [143]
39. Ultrafast Charge Carrier Dynamics and Nonlinear Optical Absorption.. [142]
40. Boosting Efficiency and Stability of Planar Inverted (FAPbI(3))(x).. [141]
41. Giant Nonlinear Optical Response in 2D Perovskite Heterostructures [140]
42. Plasmon-induced hot electron transfer in AgNW@TiO2@AuNPs nanostruc.. [139]
43. Tailoring the Surface Morphology and Phase Distribution for Effici.. [138]
44. High-Quality Dual-Plasmonic Au@Cu2- xSe Nanocrescents with Precise.. [137]
45. Emission characteristics variation of GaAs0.92Sb0.08/Al0.3Ga0.7As .. [134]
46. Conjugated Polymer-Assisted Grain Boundary Passivation for Efficie.. [133]
47. Effect of Post Thermal Annealing on the Optical Properties of InP/.. [132]
48. Investigation of localized and delocalized excitons in ZnO/ZnS cor.. [132]
49. Surface State Passivation and Optical Properties Investigation of .. [129]
50. Effect of Lateral Size and Surface Passivation on the Near-Band-Ed.. [129]
51. Influence of mixed organic cations on the structural and optical p.. [128]
52. Investigation of Localized States in GaAsSb Epilayers Grown by Mol.. [128]
53. Chiral Transition Metal Oxides: Synthesis, Chiral Origins, and Per.. [127]
54. Optical properties of quasi-type-II structure in GaAs/GaAsSb/GaAs .. [126]
55. Brief Review of Epitaxy and Emission Properties of GaSb and Relate.. [126]
56. Optical properties and applications of two-dimensional CdSe nanopl.. [126]
57. Photophysical Properties of Zn-Alloyed CsPbI3 Nanocrystals [126]
58. Unusual Fluorescent Properties of Stilbene Units and CdZnS/ZnS Qua.. [125]
59. Anchoring Vertical Dipole to Enable Efficient Charge Extraction fo.. [125]
60. Spectroscopic studies of chiral perovskite nanocrystals [124]
61. Highly sensitive and selective liquid crystal optical sensor for d.. [124]
62. Ultrafast Dynamics of Photoexcited Hot Carrier Generation and Inje.. [123]
63. Boosting the Efficiency of NiOx-Based Perovskite Light-Emitting Di.. [123]
64. Controllable Polarization of Lasing Emission From a Polymer Microf.. [122]
65. Pump angle and position effects on laser emission from quasicrysta.. [121]
66. Optical characteristics of GaAsSb alloy after rapid thermal anneal.. [121]
67. Optical property and lasing of GaAs-based nanowires GaAs基纳米线的.. [119]
68. Optical Characteristics of ZnS Passivated CdSe/CdS Quantum Dots fo.. [118]
69. Localized states emission in type-I GaAsSb/AlGaAs multiple quantum.. [118]
70. Strong multiphoton absorption properties of one styrylpyridinium s.. [118]
71. Localized-State-Dependent Electroluminescence from ZnO/ZnS Core-Sh.. [117]
72. Manipulation of Surface Plasmon Resonance in Sub-Stoichiometry Mol.. [117]
73. Ultraviolet Electroluminescence from ZnS@ZnO Core-Shell Nanowires/.. [117]
74. Effects of Material Dimensionality on the Optical Properties of Cs.. [117]
75. Observation of energy transfer a optical frequency to an ultrathin.. [117]
76. Effect of rapid thermal annealing on the optical properties of GaA.. [116]
77. Giant two- to five-photon absorption in CsPbBr2.7I0.3 two-dimensio.. [114]
78. An ultrafast-response and high-detectivity self-powered perovskite.. [113]
79. Photoluminescence: Ultrafast and Robust UV Luminescence from Cu-Do.. [112]
80. The strain, energy band and photoluminescence of GaAs0.92Sb0·08/A.. [112]
81. Tunable Chiroptical Properties from the Plasmonic Band to Metal-Li.. [111]
82. Optical properties of ultrathin ZnO films fabricated by atomic lay.. [111]
83. Strong two-photon absorption of Mn-doped CsPbCl3 perovskite nanocr.. [109]
84. Tuning Liquid Whispering Gallery Mode Microlasers by Surface Tensi.. [108]
85. Optical waveguiding properties of colloidal quantum dots doped pol.. [108]
86. Optical properties improvement of GaSb epilayers through defects c.. [108]
87. Ultrafast and Robust UV Luminescence from Cu-Doped ZnO Nanowires M.. [108]
88. Growth of GaN on monolayer hexagonal boron nitride by chemical vap.. [108]
89. Comparison Studies of the Linear and Nonlinear Optical Properties .. [105]
90. Reconfigurable Liquid Whispering Gallery Mode Microlasers [105]
91. Endowing inorganic nanomaterials with circularly polarized lumines.. [104]
92. 1,8-Octanediamine Dihydroiodide-Mediated Grain Boundary and Interf.. [104]
93. Influence of Exciton Localization on the Emission and Ultraviolet .. [101]
94. All-inorganic copper(i)-based ternary metal halides: promising mat.. [101]
95. Organic-Free and Lead-Free Perovskite Solar Cells with Efficiency .. [100]
96. 1 + 1 > 2: Dual strategies of quinolinic acid passivation and DMF .. [99]
97. Boosting the performance and stability of inverted perovskite sola.. [99]
98. Ultrafast optical nonlinearity of blue-emitting perovskite nanocry.. [98]
99. Laser-Induced Secondary Crystallization of CsPbBr3 Perovskite Film.. [96]
100. Thermally activated delayed fluorescence organic dots for two-phot.. [95]
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