Published October 26, 2016 | Version v1
Publication Open

Donor polymer design enables efficient non-fullerene organic solar cells

  • 1. Hong Kong University of Science and Technology
  • 2. University of Hong Kong
  • 3. Xi'an Jiaotong University
  • 4. HKUST Shenzhen Research Institute

Description

Abstract To achieve efficient organic solar cells, the design of suitable donor–acceptor couples is crucially important. State-of-the-art donor polymers used in fullerene cells may not perform well when they are combined with non-fullerene acceptors, thus new donor polymers need to be developed. Here we report non-fullerene organic solar cells with efficiencies up to 10.9%, enabled by a novel donor polymer that exhibits strong temperature-dependent aggregation but with intentionally reduced polymer crystallinity due to the introduction of a less symmetric monomer unit. Our comparative study shows that an analogue polymer with a C2 symmetric monomer unit yields highly crystalline polymer films but less efficient non-fullerene cells. Based on a monomer with a mirror symmetry, our best donor polymer exhibits reduced crystallinity, yet such a polymer matches better with small molecular acceptors. This study provides important insights to the design of donor polymers for non-fullerene organic solar cells.

⚠️ This is an automatic machine translation with an accuracy of 90-95%

Translated Description (Arabic)

الخلاصة لتحقيق خلايا شمسية عضوية فعالة، فإن تصميم أزواج مناسبة من المتبرعين والمستقبلين أمر بالغ الأهمية. قد لا تعمل البوليمرات المانحة الحديثة المستخدمة في خلايا الفوليرين بشكل جيد عندما يتم دمجها مع المستقبلات غير الكاملة، وبالتالي يجب تطوير بوليمرات مانحة جديدة. نبلغ هنا عن خلايا شمسية عضوية غير كاملة بكفاءة تصل إلى 10.9 ٪، يتم تمكينها بواسطة بوليمر مانح جديد يُظهر تراكمًا قويًا يعتمد على درجة الحرارة ولكن مع بلورة بوليمر منخفضة عن قصد بسبب إدخال وحدة مونومر أقل تماثلًا. تُظهر دراستنا المقارنة أن البوليمر التناظري الذي يحتوي على وحدة مونومر متناظرة C2 ينتج أغشية بوليمر عالية التبلور ولكن خلايا غير فوليرين أقل كفاءة. استنادًا إلى مونومر مع تماثل مرآة، يُظهر أفضل بوليمر مانح لدينا انخفاضًا في التبلور، ومع ذلك فإن مثل هذا البوليمر يتطابق بشكل أفضل مع المستقبلات الجزيئية الصغيرة. تقدم هذه الدراسة رؤى مهمة لتصميم البوليمرات المانحة للخلايا الشمسية العضوية غير الكاملة.

Translated Description (English)

Abstract To achieve efficient organic solar cells, the design of suitable donor–acceptor couples is crucially important. State-of-the-art donor polymers used in fullerene cells may not perform well when they are combined with non-fullerene acceptors, thus new donor polymers need to be developed. Here we report non-fullerene organic solar cells with efficiencies up to 10.9%, enabled by a novel donor polymer that exhibits strong temperature-dependent aggregation but with intentionally reduced polymer crystallinity due to the introduction of a less symmetric monomer unit. Our comparative study shows that an analogue polymer with a C2 symmetric monomer unit yields highly crystalline polymer films but less efficient non-fullerene cells. Based on a monomer with a mirror symmetry, our best donor polymer exhibits reduced crystallinity, yet such a polymer matches better with small molecular acceptors. This study provides important insights to the design of donor polymers for non-fullerene organic solar cells.

Translated Description (Spanish)

Abstract To achieve efficient organic solar cells, the design of suitable donor–acceptor couples is crucially important. State-of-the-art donor polymers used in fullerene cells may not perform well when they are combined with non-fullerene acceptors, thus new donor polymers need to be developed. Here we report non-fullerene organic solar cells with efficiencies up to 10.9%, enabled by a novel donor polymer that exhibits strong temperature-dependent aggregation but with intentionally reduced polymer crystallinity due to the introduction of a less symmetric monomer unit. Our comparative study shows that analogue polymer with a C2 symmetric monomer unit yields highly crystalline polymer films but less efficient non-fullerene cells. Based on a monomer with a mirror symmetry, our best donor polymer exhibits reduced crystallinity, yet such a polymer matches better with small molecular acceptors. This study provides important insights to the design of donor polymers for non-fullerene organic solar cells.

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Additional details

Additional titles

Translated title (Arabic)
يتيح تصميم البوليمر للمانحين خلايا شمسية عضوية فعالة غير كاملة
Translated title (English)
Donor polymer design enables efficient non-fullerene organic solar cells
Translated title (Spanish)
Donor polymer design enables efficient non-fullerene organic solar cells

Identifiers

Other
https://openalex.org/W2541201569
DOI
10.1038/ncomms13094

GreSIS Basics Section

Is Global South Knowledge
Yes
Country
China

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