| Literature DB >> 28394431 |
Kakaraparthi Kranthiraja1, Kumarasamy Gunasekar1, Hyunji Kim1, An-Na Cho2, Nam-Gyu Park2, Seonha Kim3, Bumjoon J Kim3, Ryosuke Nishikubo4, Akinori Saeki4, Myungkwan Song5, Sung-Ho Jin1.
Abstract
Perovskite solar cells (PSCs) and organic solar cells (OSCs) are promising renewable light-harvesting technologies with high performance, but the utilization of hazardous dopants and high boiling additives is harmful to all forms of life and the environment. Herein, new multirole π-conjugated polymers (P1-P3) are developed via a rational design approach through theoretical hindsight, further successfully subjecting them into dopant-free PSCs as hole-transporting materials and additive-free OSCs as photoactive donors, respectively. Especially, P3-based PSCs and OSCs not only show high power conversion efficiencies of 17.28% and 8.26%, but also display an excellent ambient stability up to 30 d (for PSCs only), owing to their inherent superior optoelectronic properties in their pristine form. Overall, the rational approach promises to support the development of environmentally and economically sustainable PSCs and OSCs.Entities:
Keywords: additive-free organic solar cells; dopant-free perovskite solar cells; new multirole π-conjugated polymers; theoretical studies; time-resolved microwave conductivity
Year: 2017 PMID: 28394431 DOI: 10.1002/adma.201700183
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849