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Material insights and challenges for non-fullerene organic solar cells  based on small molecular acceptors | Nature Energy
Material insights and challenges for non-fullerene organic solar cells based on small molecular acceptors | Nature Energy

Recent progress on non-fullerene acceptors for organic photovoltaics -  Materials Today
Recent progress on non-fullerene acceptors for organic photovoltaics - Materials Today

Device architecture and working mechanism of non-fullerene organic... |  Download Scientific Diagram
Device architecture and working mechanism of non-fullerene organic... | Download Scientific Diagram

Organic Solar Cells Based on Non-Fullerene Small Molecular Acceptor Y6
Organic Solar Cells Based on Non-Fullerene Small Molecular Acceptor Y6

Recent advances of non-fullerene, small molecular acceptors for solution  processed bulk heterojunction solar cells - Journal of Materials Chemistry  A (RSC Publishing)
Recent advances of non-fullerene, small molecular acceptors for solution processed bulk heterojunction solar cells - Journal of Materials Chemistry A (RSC Publishing)

Polymers | Free Full-Text | Enhanced Performance of Inverted Non-Fullerene  Organic Solar Cells by Using Metal Oxide Electron- and Hole-Selective  Layers with Process Temperature ≤150 °C
Polymers | Free Full-Text | Enhanced Performance of Inverted Non-Fullerene Organic Solar Cells by Using Metal Oxide Electron- and Hole-Selective Layers with Process Temperature ≤150 °C

Guest-oriented non-fullerene acceptors for ternary organic solar cells with  over 16.0% and 22.7% efficiencies under one-sun and indoor light -  ScienceDirect
Guest-oriented non-fullerene acceptors for ternary organic solar cells with over 16.0% and 22.7% efficiencies under one-sun and indoor light - ScienceDirect

Fullerene–non-fullerene hybrid acceptors for enhanced light absorption and  electrical properties in organic solar cells - ScienceDirect
Fullerene–non-fullerene hybrid acceptors for enhanced light absorption and electrical properties in organic solar cells - ScienceDirect

Diketopyrrolopyrrole-based conjugated materials for non-fullerene organic  solar cells - Journal of Materials Chemistry A (RSC Publishing)
Diketopyrrolopyrrole-based conjugated materials for non-fullerene organic solar cells - Journal of Materials Chemistry A (RSC Publishing)

Scheme 1. (a) Chemical structures of polymer donor, PTB7-Th and... |  Download Scientific Diagram
Scheme 1. (a) Chemical structures of polymer donor, PTB7-Th and... | Download Scientific Diagram

Unveiling structure-performance relationships from multi-scales in non-fullerene  organic photovoltaics | Nature Communications
Unveiling structure-performance relationships from multi-scales in non-fullerene organic photovoltaics | Nature Communications

Highly efficient non-fullerene organic solar cells enabled by a delayed  processing method using a non-halogenated solvent - Energy & Environmental  Science (RSC Publishing)
Highly efficient non-fullerene organic solar cells enabled by a delayed processing method using a non-halogenated solvent - Energy & Environmental Science (RSC Publishing)

High-efficiency non-fullerene organic solar cells enabled by a  difluorobenzothiadiazole-based donor polymer combined with a properly  matched small molecule acceptor - Energy & Environmental Science (RSC  Publishing)
High-efficiency non-fullerene organic solar cells enabled by a difluorobenzothiadiazole-based donor polymer combined with a properly matched small molecule acceptor - Energy & Environmental Science (RSC Publishing)

Enhanced Charge Transfer between Fullerene and Non-Fullerene Acceptors  Enables Highly Efficient Ternary Organic Solar Cells. | Semantic Scholar
Enhanced Charge Transfer between Fullerene and Non-Fullerene Acceptors Enables Highly Efficient Ternary Organic Solar Cells. | Semantic Scholar

Figure 2 from Non-Fullerene-Acceptor-Based Bulk-Heterojunction Organic  Solar Cells with Efficiency over 7. | Semantic Scholar
Figure 2 from Non-Fullerene-Acceptor-Based Bulk-Heterojunction Organic Solar Cells with Efficiency over 7. | Semantic Scholar

Design Principles and Top Non-Fullerene Acceptor Candidates for Organic  Photovoltaics: Joule
Design Principles and Top Non-Fullerene Acceptor Candidates for Organic Photovoltaics: Joule

Organic Solar Cells Based on Non-fullerene Small-Molecule Acceptors: Impact  of Substituent Position: Matter
Organic Solar Cells Based on Non-fullerene Small-Molecule Acceptors: Impact of Substituent Position: Matter

A-DA′D-A non-fullerene acceptors for high-performance organic solar cells |  Science China Chemistry
A-DA′D-A non-fullerene acceptors for high-performance organic solar cells | Science China Chemistry

Pyran-fused non-fullerene acceptor achieving 15.51% efficiency in organic  solar cells - ScienceDirect
Pyran-fused non-fullerene acceptor achieving 15.51% efficiency in organic solar cells - ScienceDirect

Materials | Free Full-Text | Charge Carrier Dynamics in Non-Fullerene  Acceptor-Based Organic Solar Cells: Investigating the Influence of  Processing Additives Using Transient Absorption Spectroscopy
Materials | Free Full-Text | Charge Carrier Dynamics in Non-Fullerene Acceptor-Based Organic Solar Cells: Investigating the Influence of Processing Additives Using Transient Absorption Spectroscopy

Towards high-efficiency non-fullerene organic solar cells: Matching small  molecule/polymer donor/acceptor - ScienceDirect
Towards high-efficiency non-fullerene organic solar cells: Matching small molecule/polymer donor/acceptor - ScienceDirect

A-π-A structured non-fullerene acceptors for stable organic solar cells  with efficiency over 17% | Science China Chemistry
A-π-A structured non-fullerene acceptors for stable organic solar cells with efficiency over 17% | Science China Chemistry

Organic semiconductor research takes substantial leap forward
Organic semiconductor research takes substantial leap forward

IDIC | N-Type Non-Fullerene Acceptor | CAS 1883441-92-6 | Ossila
IDIC | N-Type Non-Fullerene Acceptor | CAS 1883441-92-6 | Ossila