16% efficiency all-polymer organic solar cells enabled by a finely ...
There is an urgent demand for all-polymer organic solar cells (AP-OSCs) to gain higher efficiency. Here, we successfully improve the performance to 16.09% by introducing a …
There is an urgent demand for all-polymer organic solar cells (AP-OSCs) to gain higher efficiency. Here, we successfully improve the performance to 16.09% by introducing a …
There is an urgent demand for all-polymer organic solar cells (AP-OSCs) to gain higher efficiency. Here, we successfully improve the performance to 16.09% by introducing a small amount of BN-T, a B←N-type polymer acceptor, into the PM6:PY-IT blend.
All-polymer solar cells with blending active layer of polymer donors and polymer acceptors have attracted tremendous interest due to their outstanding advantages such as superior morphological and mechanical stability, which show great potential in large-area and flexible devices.
All-polymer solar cells are a kind of OPV cells with a bulk heterojunction (BHJ) active layer of a polymeric electron donor and a polymeric electron acceptor.
Polymerized small molecular acceptor based all-polymer solar cells with an efficiency of 16.16% via tuning polymer blend morphology by molecular design. A near-infrared polymer acceptor enables over 15% efficiency for all-polymer solar cells.
All-polymer solar cells (all-PSCs) have attracted significant research interest in the recent decade due to their great potential in stretchable electronic applications in terms of long-term stability and mechanical stretchability.
With the advantages of flexibility, translucency, light weight and low cost, organic solar cells can be prepared into large-area flexible devices through roll-to-roll, inkjet printing and rod coating processes, which have tremendous potential for application [2, 3].
There is an urgent demand for all-polymer organic solar cells (AP-OSCs) to gain higher efficiency. Here, we successfully improve the performance to 16.09% by introducing a …
Small molecule organic solar cells (OSCs) represent an alternative route for OSCs, but their efficiencies are lower than polymer-molecule blend based counterparts. Here Zhou et al. show high ...
By using PM6 as the polymer donor and PYT as the third component, we found the ternary all-polymer solar cell (all-PSC) exhibited an impressively high power conversion efficiency of 17.2%, which is much higher than those of the binary all-PSCs (14.4% for PM6:PYT and 15.0% for PM6:PY2F-T). Impressively, the optimal ternary device shows superior light-soaking stability …
Among various OPV architectures, all-polymer solar cells (all-PSCs) have garnered substantial interest due to their remarkable morphological stability and outstanding film ductility. All-PSCs stand out by employing …
Sun, R. et al. 18.2%-Efficient ternary all-polymer organic solar cells with improved stability enabled by a chlorinated guest polymer acceptor. Joule 7, 221–237 (2023). Article CAS Google Scholar
All-polymer solar cells (all-PSCs) exhibit tremendous potential in fields such as smart and wearable electronic devices due to the benefits of low-cost, flexibility and large-area processability. Researches related to all-PSCs is mushrooming with the development of new polymeric donor and acceptor materials and the continuous ...
All-small-molecule organic solar cells (all-SMOSCs) have attracted tremendous attention on account of their special merits of easy purification, well-defined molecular structures, and better molecular repeatability compared with polymer solar cells (PSCs). However, the reported PCEs of state-of-the-art all-SMOSCs still lag far behind their PSC counterparts, …
3 · Organic solar cells (OSCs) have developed rapidly in recent years. However, the energy loss (Eloss) remains a major obstacle to further improving the photovoltaic performance. To address this issue, a ternary strategy has been employed to precisely tune the Eloss and boost the efficiency of OSCs. The B‒N-based polymer donor has been proved process high E(T1) …
Here, thin film organic photovoltaics with nano-sized phase separation integrated in micro-sized surface topology is demonstrated as an ideal solution to proposed applications. All-polymer...
All-polymer solar cells with blending active layer of polymer donors and polymer acceptors have attracted tremendous interest due to their outstanding advantages such as superior …
All-polymer solar cells (all-PSCs) have garnered significant interest due to their unique advantages, including significantly improved device stability and mechanical stretchability compared with other types of organic solar cells. Recently, all-PSCs have achieved remarkable improvements in photovoltaic performance. Crucial to this advancement is the development of …
Here, thin film organic photovoltaics with nano-sized phase separation integrated in micro-sized surface topology is demonstrated as an ideal solution to proposed …
Single junction organic solar cells (OSCs) have now achieved power conversion efficiencies (PCEs) exceeding 17 %. Most of these high performance OSCs contain fullerene acceptors (FAs) and non-fullerene small-molecule acceptors (NFSMAs). In contrast, there are very limited usages of polymer acceptors.
Among various OPV architectures, all-polymer solar cells (all-PSCs) have garnered substantial interest due to their remarkable morphological stability and outstanding film ductility. All-PSCs stand out by employing conjugated polymers as both electron donor and acceptor materials, thereby replacing traditional fullerene derivatives. This ...
All-polymer solar cells (all-PSCs) exhibit tremendous potential in fields such as smart and wearable electronic devices due to the benefits of low-cost, flexibility and large-area …
In addition to the readily tunable structural, optical, and electrochemical properties, all-polymer organic solar cells (AP-OSCs), based on polymer donors and polymer acceptors, have unique advantages, such as excellent stability …
Herein, we demonstrate highly thermally stable OSCs using multicomponent photoactive layer synthesized via a facile one-pot polymerization, which show the advantages of low synthetic cost and...
All-polymer solar cells (all-PSCs) have garnered significant interest due to their unique advantages, including significantly improved device stability and mechanical stretchability compared with other types of organic solar cells. Recently, all-PSCs have achieved remarkable improvements in photovoltaic performance. Crucial to this advancement ...
All-polymer solar cells with blending active layer of polymer donors and polymer acceptors have attracted tremendous interest due to their outstanding advantages such as superior morphological and mechanical stability, which show great potential in large-area and flexible devices. With the emergence of various novel polymer donors/acceptors as ...
All-polymer solar cells (all-PSCs) are thought to be the most promising candidates for the practical application of organic solar cells (OSCs). However, the efficiencies …
All-polymer solar cells (all-PSCs), with their specific merits of superior operation stability and remarkable mechanical flexibility, have made significant progress and become an indispensable part of the field of organic solar cells (OSCs) in recent years. This progress has established them as an indispensable component of the OSC landscape. One of …
All-polymer solar cells (all-PSCs) are thought to be the most promising candidates for the practical application of organic solar cells (OSCs). However, the efficiencies of all-PSCs remain lower than those of small molecule acceptor (SMA)-based OSCs due to their unfavorable active-layer morphology.
Here, the authors regulate the assembly behaviour of giant dimeric donors, realizing all-giant-oligomeric-based organic solar cells with promising device efficiency and stability.
There is an urgent demand for all-polymer organic solar cells (AP-OSCs) to gain higher efficiency. Here, we successfully improve the performance to 16.09% by introducing a small amount of BN-T, a B←N-type polymer acceptor, into the PM6:PY-IT blend. It has been found that BN-T makes the active layer, based on the PM6:PY-IT:BN-T ...
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