144 results on '"Feng, Huanran"'
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2. A simple-structured benzo[1,2-b:4,5-b’]dithiophene-based molecule as a third component enables organic solar cells with over 18.2% efficiency
3. Ratiometric fluorescence sensor prepared by silica-based fluorescent surface molecularly imprinted polymer for efficient detection of bisphenol A
4. Exploring ternary organic photovoltaics for the reduced nonradiative recombination and improved efficiency over 17.23% with a simple large-bandgap small molecular third component
5. The prior rules of designing Ti3C2Tx MXene-based gas sensors
6. High-efficiency organic solar cells enabled by nonfullerene acceptors with varying alkyloxy substitution positions of the phenyl outer side chains.
7. Side chain engineering investigation of non-fullerene acceptors for photovoltaic device with efficiency over 15%
8. Fluorination-modulated end units for high-performance non-fullerene acceptors based organic solar cells
9. A chlorinated low-bandgap small-molecule acceptor for organic solar cells with 14.1% efficiency and low energy loss
10. Impact of end-capped groups on the properties of dithienosilole-based small molecules for solution-processed organic solar cells
11. Facile and Controllable Ultrasonic Nebulization Method for Fabricating Ti 3 C 2 Tx‐Based Strain Sensor and Monitoring of Human Motion and Sound Wave
12. Effects of alkyl chains on intermolecular packing and device performance in small molecule based organic solar cells
13. Efficiency Enhancement of Organic Photovoltaics Enabled by Introducing Simple-structured Benzo[1,2-b:4,5-b’]dithiophene Based Large-bandgap Small Molecules as Third Components
14. A low bandgap carbazole based small molecule for organic solar cells
15. Facile and Controllable Ultrasonic Nebulization Method for Fabricating Ti3C2Tx‐Based Strain Sensor and Monitoring of Human Motion and Sound Wave.
16. A series of dithienobenzodithiophene based small molecules for highly efficient organic solar cells
17. Open-circuit voltage up to 1.07 V for solution processed small molecule based organic solar cells
18. A carbon nanosphere nanofluid for improving the toughness and thermal properties of epoxy composites
19. An efficient enhancement in organic photovoltaics by introducing simple-structured benzo[1,2-b:4,5-b′]dithiophene-based large-bandgap small molecules as the third component.
20. Controlling Response of Polyaniline Towards Humidity by Self-Assembly Fatty Acids
21. A new oligobenzodithiophene end-capped with 3-ethyl-rhodanine groups for organic solar cells with high open-circuit voltage
22. Exploring ternary organic photovoltaics for the reduced nonradiative recombination and improved efficiency over 17.23% with a simple large-bandgap small molecular third component
23. Review—Betavoltaic Cell: The Past, Present, and Future
24. Subtle Morphology Control with Binary Additives for High-Efficiency Non-Fullerene Acceptor Organic Solar Cells
25. A privileged ternary blend enabling non-fullerene organic photovoltaics with over 14% efficiency
26. High Performance Thick‐Film Nonfullerene Organic Solar Cells with Efficiency over 10% and Active Layer Thickness of 600 nm
27. Highly Conducting MXene–Silver Nanowire Transparent Electrodes for Flexible Organic Solar Cells
28. New Anthracene‐Fused Nonfullerene Acceptors for High‐Efficiency Organic Solar Cells: Energy Level Modulations Enabling Match of Donor and Acceptor
29. Small Molecule Acceptors with a Nonfused Architecture for High-Performance Organic Photovoltaics
30. A cyclopentadithiophene-bridged small molecule acceptor with near-infrared light absorption for efficient organic solar cells
31. Alkylthio substituted thiophene modified benzodithiophene-based highly efficient photovoltaic small molecules
32. Ternary Organic Solar Cells With 12.8% Efficiency Using Two Nonfullerene Acceptors With Complementary Absorptions
33. Synergistic Modifications of Side Chains and End Groups in Small Molecular Acceptors for High Efficient Non-Fullerene Organic Solar Cells
34. A New Nonfullerene Acceptor with Near Infrared Absorption for High Performance Ternary-Blend Organic Solar Cells with Efficiency over 13%
35. A Halogenation Strategy for over 12% Efficiency Nonfullerene Organic Solar Cells
36. Efficient carbazole-based small-molecule organic solar cells with an improved fill factor
37. Fine‐Tuning the Energy Levels of a Nonfullerene Small‐Molecule Acceptor to Achieve a High Short‐Circuit Current and a Power Conversion Efficiency over 12% in Organic Solar Cells
38. 3-Dimensional non-fullerene acceptors based on triptycene and perylene diimide for organic solar cells
39. An A-D-A Type Small-Molecule Electron Acceptor with End-Extended Conjugation for High Performance Organic Solar Cells
40. Small-Molecule Acceptor Based on the Heptacyclic Benzodi(cyclopentadithiophene) Unit for Highly Efficient Nonfullerene Organic Solar Cells
41. New small-molecule acceptors based on hexacyclic naphthalene(cyclopentadithiophene) for efficient non-fullerene organic solar cells
42. Solution-processed organic tandem solar cells with power conversion efficiencies >12%
43. A New Nonfullerene Electron Acceptor with a Ladder Type Backbone for High‐Performance Organic Solar Cells
44. Oligothiophene-based small molecules with 3,3′-difluoro-2,2′-bithiophene central unit for solution-processed organic solar cells
45. Evaluation of Small Molecules as Front Cell Donor Materials for High-Efficiency Tandem Solar Cells
46. A simple small molecule as an acceptor for fullerene-free organic solar cells with efficiency near 8%
47. Subtle Balance Between Length Scale of Phase Separation and Domain Purification in Small-Molecule Bulk-Heterojunction Blends under Solvent Vapor Treatment
48. Dithienosilole-Based Small-Molecule Organic Solar Cells with an Efficiency over 8%: Investigation of the Relationship between the Molecular Structure and Photovoltaic Performance
49. Fine‐Tuning the Energy Levels of a Nonfullerene Small‐Molecule Acceptor to Achieve a High Short‐Circuit Current and a Power Conversion Efficiency over 12% in Organic Solar Cells.
50. Dithienopyrrole Based Small Molecule with Low Band Gap for Organic Solar Cells
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