1.
Highly Oriented Low-Dimensional Tin Halide Perovskites with Enhanc..
[1551]
|
2.
Ultra-high open-circuit voltage of tin perovskite solar cells via ..
[1454]
|
3.
Efficient and Stable Inverted Perovskite Solar Cells Incorporating..
[1355]
|
4.
The 3D-structure-mediated growth of zero-dimensional Cs4SnX6 nanoc..
[1072]
|
5.
Bi-inorganic-ligand coordinated colloidal quantum dot ink
[1021]
|
6.
2D-Quasi-2D-3D Hierarchy Structure for Tin Perovskite Solar Cells ..
[1020]
|
7.
Energy Level Tuning of PEDOT:PSS for High Performance Tin-Lead Mix..
[918]
|
8.
Plasma-enhanced atomic layer deposition of SiO2 for channel isolat..
[904]
|
9.
Highly Efficient Inverted Structural Quantum Dot Solar Cells
[898]
|
10.
Symmetrization of the Crystal Lattice of MAPbI(3) Boosts the Perfo..
[892]
|
11.
Colloidal quantum dot ligand engineering for high performance sola..
[866]
|
12.
A Colloidal-Quantum-Dot Infrared Photodiode with High Photoconduct..
[853]
|
13.
A TiO2 embedded structure for perovskite solar cells with anomalou..
[836]
|
14.
Ambipolar Graphene-Quantum Dot Phototransistors with CMOS Compatib..
[830]
|
15.
Colloidal-quantum-dot-in-perovskite nanowires
[830]
|
16.
Supersaturation controlled growth of MAFAPbI(3) perovskite film fo..
[815]
|
17.
Hole-transporting layer-free inverted planar mixed lead-tin perovs..
[809]
|
18.
Inverted Si:PbS Colloidal Quantum Dot Heterojunction-Based Infrare..
[759]
|
19.
Silicon: quantum dot photovoltage triodes
[758]
|
20.
High quality silicon: Colloidal quantum dot heterojunction based i..
[723]
|
21.
Large Photomultiplication by Charge-Self-Trapping for High-Respons..
[723]
|
22.
Cs0.15FA0.85PbI3/CsxFA1-xPbI3 Core/Shell Heterostructure for Highl..
[699]
|
23.
Solution-processed upconversion photodetectors based on quantum do..
[683]
|
24.
Quantum-size-tuned heterostructures enable efficient and stable in..
[673]
|
25.
Integrated Structure and Device Engineering for High Performance a..
[669]
|
26.
Low-Dimensional Inorganic Tin Perovskite Solar Cells Prepared by T..
[595]
|
27.
One-Step Synthesis of SnI2·(DMSO)xAdducts for High-Performance Ti..
[595]
|
28.
Surface-Energy-Regulated Growth of α-Phase Cs0.03FA0.97PbI3 for H..
[591]
|
29.
Quasi-2D Bilayer Surface Passivation for High Efficiency Narrow Ba..
[564]
|
30.
Surface heterojunction based on n-type low-dimensional perovskite ..
[561]
|
31.
Dehydration-Reaction-Based Low-Temperature Synthesis of Amorphous ..
[560]
|
32.
High-member low-dimensional Sn-based perovskite solar cells
[559]
|
33.
Electron-withdrawing organic ligand for high-efficiency all-perovs..
[544]
|
34.
一种量子点红外上转换器件及其制备方法
[533]
|
35.
一种量子点近红外光电探测器及其制备方法
[527]
|
36.
Large-Size and Polarization-Sensitive Two-Dimensional Sn Perovskit..
[512]
|
37.
Symmetry-Broken 2D Lead-Tin Mixed Chiral Perovskite for High Asymm..
[483]
|
38.
Zn-Ag-In-S量子点、基于该量子点的催化剂和光电极及其制备
[389]
|
39.
Quantum-Tuned Cascade Multijunction Infrared Photodetector
[385]
|
40.
Suppressing Fluoride Segregation for High Efficiency Tin Perovskit..
[364]
|
41.
Efficient quasi-2D tin perovskite solar cells based on mixed monoa..
[358]
|
42.
PbS colloidal quantum dots patterning technique with low vertical ..
[326]
|
43.
Nano-Oxide-Assisted Si/PbS CQD Heterojunction Photodetectors for B..
[307]
|
44.
Infrared visualization based on quantum dot upconversion photodete..
[223]
|
45.
胶体量子点表界面工程
[183]
|
46.
In-situ growth of titanium alkoxide network encapsul..
[147]
|