2022

2022 Science, Achieve 25.6% certificated efficiency! The secret of stable perovskite cells - (PbI<sub>2</sub>)<sub>2</sub>RbCl 縮圖2

2022 Science, Achieve 25.6% certificated efficiency! The secret of stable perovskite cells – (PbI2)2RbCl

2022 Science (IF 47.728): Achieve 25.6% certificated efficiency! The secret of stable perovskite cells – (PbI2)2RbCl SS-X solar simulator makes the breakthrough possible! Top-Notch Due to It’s Precision! There are several ways to enhance the power conversion efficiency (PCE) of perovskite solar cells (PSCs). Science (IF 47.728) published a study in July 2022. In halide …

2022 Science, Achieve 25.6% certificated efficiency! The secret of stable perovskite cells – (PbI2)2RbCl Read More »

Water-Insensitive Electron Transport and Photoactive Layers

Science News: 2022 Adv. Funct. Mater., How to Improve the Underwater Stability of Organic Photovoltaic Cells? Using Water-Insensitive Electron Transport and Photoactive Layers

Science News: 2022 Adv. Funct. Mater., How to Improve the Underwater Stability of Organic Photovoltaic Cells? Using Water-Insensitive Electron Transport and Photoactive Layers   Organic Photovoltaic (OPV) is the third generation of photovoltaic technology. Due to its advantages of easy manufacture, low cost, and good processing performance, it has received a lot of attention in recent …

Science News: 2022 Adv. Funct. Mater., How to Improve the Underwater Stability of Organic Photovoltaic Cells? Using Water-Insensitive Electron Transport and Photoactive Layers Read More »

A Selective Targeting Anchor Strategy Affords Efficient and Stable Ideal-Bandgap Perovskite Solar Cells

2022 Adv. Mater., A Selective Targeting Anchoring Strategy for Efficient and Stable Ideal- Bandgap Perovskite Solar Cells

Contents 2022 Adv. Mater., A Selective Targeting Anchoring Strategy for Efficient and Stable Ideal- Bandgap Perovskite Solar Cells Contents Highlights   Selective targeted anchoring strategy can fabricate efficient and stable ideal-bandgap perovskite solar cells. Strategy of molecule selective targeting anchoring (STA) was established, employing phenethylammonium iodide (PEAI) and ethylenediaminediiodide (EDAI) as co-modifiers to selectively anchor with …

2022 Adv. Mater., A Selective Targeting Anchoring Strategy for Efficient and Stable Ideal- Bandgap Perovskite Solar Cells Read More »

2022 Science Beyond 24% Efficiency! How to Build an Interfacial Heterojunction for Inverse Perovskite Solar Cells

2022 Science: Beyond 24% Efficiency! How to Build an Interfacial Heterojunction for Inverse Perovskite Solar Cells?

Contents 2022 Science: Beyond 24% Efficiency! How to Build an Interfacial Heterojunction for Inverse Perovskite Solar Cells? Contents Highlights This study adopted the idea of constructing an interface heterojunction to increase the built-in potential and enhances the built-in potential of reverse perovskite cells. Through surface sulfidation, an efficient interfacial heterojunction was constructed, and the reverse …

2022 Science: Beyond 24% Efficiency! How to Build an Interfacial Heterojunction for Inverse Perovskite Solar Cells? Read More »

shear-impulse-approach-to-green-printing-large-area

2022 Energy Environ. Sci., Shear Impulse Approach for the Preparation of High-Performance and Scalable Organic Solar Cells in Green Solvents

Contents 2022 Energy Environ. Sci., Shear Impulse Approach for the Preparation of High-Performance and Scalable Organic Solar Cells in Green Solvents Contents Highlights In this research, the shear impulse strategy is used to fine-tune the morphology of non-halogenated solvent treated active layer films, and the critical conditions for homogenizing printing organic solar cells (OSCs) are …

2022 Energy Environ. Sci., Shear Impulse Approach for the Preparation of High-Performance and Scalable Organic Solar Cells in Green Solvents Read More »

27.6% PerovskiteC-si Tandem Solar Cell! Topcon Structure for Industrial Production

Science News: 2022 Adv. Energy Mater., 27.6% Perovskite/C-si Tandem Solar Cell! Topcon Structure for Industrial Production?

Science News: 2022 Adv. Energy Mater., 27.6% Perovskite/C-si Tandem Solar Cell! Topcon Structure for Industrial Production?   Organic-inorganic metal halide perovskites show great potential in a variety of applications. Especially in photovoltaic (PV) devices, organic-inorganic metal halide perovskites can achieve excellent optoelectronic properties through solution processing. By changing the composition, the band gap of the perovskite …

Science News: 2022 Adv. Energy Mater., 27.6% Perovskite/C-si Tandem Solar Cell! Topcon Structure for Industrial Production? Read More »

Inverted perovskite solar cell Efficiency Breakthrough 25% PCE

2022 Science (IF 47.728), Breakthrough Efficiency of 25%! How to make inverted perovskite solar cells highly efficient and stable?

2022 Science (IF 47.728), Breakthrough Efficiency of 25%! How to make inverted perovskite solar cells highly efficient and stable? Enlitech’s REPS system makes Voc-loss analysis of solar cells no longer out of reach!   Compared with traditional n-i-p perovskite solar cells, inverted (p-i-n) perovskite solar cells have higher stability and lifetime, but generally have lower power …

2022 Science (IF 47.728), Breakthrough Efficiency of 25%! How to make inverted perovskite solar cells highly efficient and stable? Read More »

dual-functional Strategy regulate crystallization defects

2022 Joule, Efficiency reaches 24.25% Single PSC!How Dual-Functional Strategy Regulate Crystallization and Defects

2022 Joule, Efficiency reaches 24.25% Single PSC!How Dual-Functional Strategy Regulate Crystallization and Defects Top-Notch Due to It’s Precision!   Highlights: A dual-functional strategy is developed to regulate crystallization and defects A single PSC cell can achieve 24.25% efficiency with excellent stability 10.4cm2 minimodule can achieve >20.5% efficiency   Joule (IF 41.248) published a study in March 2022. …

2022 Joule, Efficiency reaches 24.25% Single PSC!How Dual-Functional Strategy Regulate Crystallization and Defects Read More »

energetic disorder ternary OPV organic photovoltaics Joule

Science News: 2022 Joule (IF 41.248), Approaching 19% Efficiency! How to Reduce The Energetic Disorder via Ternary OPV?

Science News: 2022 Joule (IF 41.248), Approaching 19% Efficiency! How to Reduce The Energetic Disorder via Ternary OPV? Highlights Combining symmetric-asymmetric NFAs with similar absorption profiles to construct a ternary OPV (TOPV). Reduced energy loss results in higher Voc required for TOPV compared to two binary OPVs. TOPV achieved record efficiency of 18.8% (certified as …

Science News: 2022 Joule (IF 41.248), Approaching 19% Efficiency! How to Reduce The Energetic Disorder via Ternary OPV? Read More »

Highly efficient CsPbI3Cs1-xDMAxPbI3 bulk heterojunction perovskite solar cell

Science News: 2022 Joule, Achieve 20.32% PCE! How the Bulk Heterojunction Structure Can Do It

Science News: 2022 Joule, Achieve 20.32% PCE! How the Bulk Heterojunction Structure Can Do It   The open-circuit voltage (VOC) of cesium-based perovskite solar cells (Cs-PSCs) is severely limited by carrier recombination both in bulk and at the interface between the perovskite layer, which mainly from the increase in fabrication temperature. To improve the performance of …

Science News: 2022 Joule, Achieve 20.32% PCE! How the Bulk Heterojunction Structure Can Do It Read More »

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