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View article: Research Progress on Electrochromic Properties of WO3 Thin Films
Research Progress on Electrochromic Properties of WO3 Thin Films Open
With continuous breakthroughs in electrochromic technology, tungsten trioxide (WO3) thin films, as a core material in this field, are rapidly expanding their applications in smart windows, anti-glare automotive rearview mirrors, and adapti…
View article: Research Progress on Thermoelectric Properties of Doped SnSe Thin Films
Research Progress on Thermoelectric Properties of Doped SnSe Thin Films Open
With the continuous advancement of science and technology, SnSe thin films are widely used in various fields such as solar cells, energy harvesting, and flexible devices. The importance of SnSe thin films continues to be highlighted, from …
View article: Marker pen writing of perovskite solar modules
Marker pen writing of perovskite solar modules Open
View article: Trimetallic Conibi-Ldh@Bi2o3 Composite Electrode Derived from Zif-67 with Outstanding Capacitive and Stability for Efficient Hybrid Supercapacitor
Trimetallic Conibi-Ldh@Bi2o3 Composite Electrode Derived from Zif-67 with Outstanding Capacitive and Stability for Efficient Hybrid Supercapacitor Open
View article: Cadmium‐Doping Slows Trap Emptying in Ambient‐Air Blade‐Coated Formamidinium Lead Iodide Perovskite Solar Cells
Cadmium‐Doping Slows Trap Emptying in Ambient‐Air Blade‐Coated Formamidinium Lead Iodide Perovskite Solar Cells Open
Formamidinium lead iodide (FAPbI 3 ) in its α‐phase is among the most desirable perovskite compositions for solar cells. However, because of its transition into the yellow δ‐phase at room temperature, it is a challenge to process it in amb…
View article: Zif-Derived Zns@Co3s4@Mxene@Ni-Ldh/Nfcomposite for Efficient Supercapacitor
Zif-Derived Zns@Co3s4@Mxene@Ni-Ldh/Nfcomposite for Efficient Supercapacitor Open
View article: Bimetallic Znni-Zif/Ldh@P Composite Electrode Derived from Zif-8 for Efficient Asymmetric Supercapacitor with Outstanding Capacitive Performance
Bimetallic Znni-Zif/Ldh@P Composite Electrode Derived from Zif-8 for Efficient Asymmetric Supercapacitor with Outstanding Capacitive Performance Open
View article: Design of Nicomn-Oh@Ti3c2tx Composite Electrode with Hollow Rhombic Dodecahedral Structure for Efficient Supercapacitor
Design of Nicomn-Oh@Ti3c2tx Composite Electrode with Hollow Rhombic Dodecahedral Structure for Efficient Supercapacitor Open
View article: Rational Construction of Co3s4@Ti3c2tx@Niv-Ldh/Nf Compos Via Core-Shell Design for Efficient Supercapacitor and Dye-Sensitized Solar Cells
Rational Construction of Co3s4@Ti3c2tx@Niv-Ldh/Nf Compos Via Core-Shell Design for Efficient Supercapacitor and Dye-Sensitized Solar Cells Open
View article: Selective deactivation of perovskite grain boundaries
Selective deactivation of perovskite grain boundaries Open
Grain boundaries in perovskites are a major source of degradation in perovskite solar cells. Here, we report selective passivation of perovskite grain boundaries with the aid of biphenyl-containing moieties. We find that biphenyl ligands s…
View article: High‐Throughput Exploration of Triple‐Cation Perovskites via All‐in‐One Compositionally‐Graded Films
High‐Throughput Exploration of Triple‐Cation Perovskites via All‐in‐One Compositionally‐Graded Films Open
Many devices heavily rely on combinatorial material optimization. However, new material alloys are classically developed by studying only a fraction of giant chemical space, while many intermediate compositions remain unmade in light of th…
View article: Efficient carbon electrode perovskite solar cells with robust buffer interfaces
Efficient carbon electrode perovskite solar cells with robust buffer interfaces Open
Carbon electrode perovskite solar cell has great potential in commercial application based on its low cost, superior stability, and facile fabrication process. However, its performance still lags behind that of devices with gold anode, whi…
View article: Highly efficient and stable near-infrared photodetectors enabled from passivated tin–lead hybrid perovskites
Highly efficient and stable near-infrared photodetectors enabled from passivated tin–lead hybrid perovskites Open
Tin–lead perovskite-based photodetectors have a wide light-absorption wavelength range, which spans 1000 nm. However, the preparation of the mixed tin–lead perovskite films faces two great obstacles, namely easy oxidation of Sn 2+ to Sn 4+…
View article: Construction of Magnetic Fe2p2o7/Ni2p@Mxene Composite Counter Electrode with “Pillared Effect” for Efficient Dye-Sensitized Solar Cells
Construction of Magnetic Fe2p2o7/Ni2p@Mxene Composite Counter Electrode with “Pillared Effect” for Efficient Dye-Sensitized Solar Cells Open
View article: Tungsten Phosphide Microsheets In‐Situ Grown on Carbon Fiber as Counter Electrode Catalyst for Efficient Dye‐Sensitized Solar Cells
Tungsten Phosphide Microsheets In‐Situ Grown on Carbon Fiber as Counter Electrode Catalyst for Efficient Dye‐Sensitized Solar Cells Open
The development of low‐cost, green, and pollution‐free counter electrode materials with high catalytic activity plays a critical role in improving the photovoltaic performance of dye‐sensitized solar cells (DSSCs). In recent years, transit…
View article: Banana‐shaped electron acceptors with an electron‐rich core fragment and 3D packing capability
Banana‐shaped electron acceptors with an electron‐rich core fragment and 3D packing capability Open
The emergence of Y6‐type nonfullerene acceptors has greatly enhanced the power conversion efficiency (PCE) of organic solar cells (OSCs). However, which structural feature is responsible for the excellent photovoltaic performance is still …
View article: Synergistic Effects of Moinsns@Cnts on Electrode Interface Catalysis and Charge Transfer in Efficient Dye-Sensitized Solar Cells
Synergistic Effects of Moinsns@Cnts on Electrode Interface Catalysis and Charge Transfer in Efficient Dye-Sensitized Solar Cells Open
View article: A Dye-Sensitized Solar Cells Based on Comop2@Mxene@Cnts Composite Counter Electrode with “Pillared Effect” Generated an Efficiency of 10.64%
A Dye-Sensitized Solar Cells Based on Comop2@Mxene@Cnts Composite Counter Electrode with “Pillared Effect” Generated an Efficiency of 10.64% Open
View article: Synergistic Effects of In4sns8@Mos2@Cnts on Electrode Interface Catalysis and Charge Transfer in Efficient Dye-Sensitized Solar Cells
Synergistic Effects of In4sns8@Mos2@Cnts on Electrode Interface Catalysis and Charge Transfer in Efficient Dye-Sensitized Solar Cells Open
View article: Efficient Organic Solar Cells Enabled by Simple Non‐Fused Electron Donors with Low Synthetic Complexity
Efficient Organic Solar Cells Enabled by Simple Non‐Fused Electron Donors with Low Synthetic Complexity Open
Fused‐ring electron donors boost the efficiency of organic solar cells (OSCs), but they suffer from high cost and low yield for their large synthetic complexity (SC > 30%). Herein, the authors develop a series of simple non‐fused‐ring elec…
View article: Co-Ni Basic Carbonate Nanowire/Carbon Nanotube Network With High Electrochemical Capacitive Performance via Electrochemical Conversion
Co-Ni Basic Carbonate Nanowire/Carbon Nanotube Network With High Electrochemical Capacitive Performance via Electrochemical Conversion Open
In this work, the Co-Ni basic carbonate nanowires were in-situ grown on carbon nanotube (CNT) network through a facile chemical bath deposition method, which could be further converted into active hydroxide via cyclic voltammetry strategy.…
View article: Correlation between Molecular Configuration and Charge Transfer Dynamics in Highly Efficient Organic Solar Cells
Correlation between Molecular Configuration and Charge Transfer Dynamics in Highly Efficient Organic Solar Cells Open
View article: Synthesis of MoIn2S4@CNTs Composite Counter Electrode for Dye-Sensitized Solar Cells
Synthesis of MoIn2S4@CNTs Composite Counter Electrode for Dye-Sensitized Solar Cells Open
A ternary and composite MoIn 2 S 4 @CNTs counter electrode (CE) with a hedgehog ball structure was synthesized by using a facile one-step hydrothermal method. The composite MoIn 2 S 4 @CNTs film possesses large specific surface area throug…
View article: TiO2-Seeded Hydrothermal Growth of Spherical BaTiO3 Nanocrystals for Capacitor Energy-Storage Application
TiO2-Seeded Hydrothermal Growth of Spherical BaTiO3 Nanocrystals for Capacitor Energy-Storage Application Open
Simple but robust growth of spherical BaTiO3 nanoparticles with uniform nanoscale sizes is of great significance for the miniaturization of BaTiO3-based electron devices. This paper reports a TiO2-seeded hydrothermal process to synthesize …
View article: Efficient Polymer Solar Cells With High Fill Factor Enabled by A Furo[3,4‐c]pyrrole‐4,6‐dione‐Based Copolymer
Efficient Polymer Solar Cells With High Fill Factor Enabled by A Furo[3,4‐c]pyrrole‐4,6‐dione‐Based Copolymer Open
Sol. RRL 2019, 6, 1900012 In the initially published version of this article, the author list and affiliations and the acknowledgements were incorrect. The correct author list is as follows: Yueyue Gao*, Zhen Wang, Xin Yu, Zhixiang Wei, Yo…
View article: Highly Efficient Quasi-Solid-State Asymmetric Supercapacitors Based on MoS2/MWCNT and PANI/MWCNT Composite Electrodes
Highly Efficient Quasi-Solid-State Asymmetric Supercapacitors Based on MoS2/MWCNT and PANI/MWCNT Composite Electrodes Open
View article: In Situ Back‐Contact Passivation Improves Photovoltage and Fill Factor in Perovskite Solar Cells
In Situ Back‐Contact Passivation Improves Photovoltage and Fill Factor in Perovskite Solar Cells Open
Organic–inorganic hybrid perovskite solar cells (PSCs) have seen a rapid rise in power conversion efficiencies in recent years; however, they still suffer from interfacial recombination and charge extraction losses at interfaces between th…
View article: An efficient method to boost the short-circuit current of quantum-dot-sensitized solar cells
An efficient method to boost the short-circuit current of quantum-dot-sensitized solar cells Open
According to the Marcus theory, the driving force for the transfer of photogenerated electrons from quantum dots (QDs) to oxide nanocrystals depends on the energy difference of the system. In this study, an efficient driving force for the …
View article: Multibandgap quantum dot ensembles for solar-matched infrared energy harvesting
Multibandgap quantum dot ensembles for solar-matched infrared energy harvesting Open
As crystalline silicon solar cells approach in efficiency their theoretical limit, strategies are being developed to achieve efficient infrared energy harvesting to augment silicon using solar photons from beyond its 1100 nm absorption edg…
View article: Dipolar cations confer defect tolerance in wide-bandgap metal halide perovskites
Dipolar cations confer defect tolerance in wide-bandgap metal halide perovskites Open