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- W2600474952 endingPage "112" @default.
- W2600474952 startingPage "112" @default.
- W2600474952 abstract "Organic photovoltaic cells based on bulk-heterojunction architecture have been a topic of intense research for the past two decades. Recent reports on power conversion efficiency surpassing 10% suggest these devices are a viable low-cost choice for a range of applications where conventional silicon solar cells are not suitable. Further improvements in efficiency could be achieved with the enhanced interaction between the donor and acceptor components. Effective utilization of supramolecular interactions to tailor and manipulate the communication between the components in the blend is a good strategy towards this end. Literature reports suggest that the long-term stability of organic solar cells, a major hurdle for commercial applications, can also be partially addressed by generating stable supramolecular nanostructures. In this review, we have made an attempt to summarize advances in small molecule, oligomer and polymer based systems, wherein supramolecular interactions such as hydrogen-bonding, pi-pi stacking, and dipole-dipole are explored for realizing stable and efficient bulk-heterojunction solar cells." @default.
- W2600474952 created "2017-04-07" @default.
- W2600474952 creator A5036259823 @default.
- W2600474952 creator A5042130634 @default.
- W2600474952 creator A5045499919 @default.
- W2600474952 date "2017-03-21" @default.
- W2600474952 modified "2023-10-16" @default.
- W2600474952 title "Self-Assembled Organic Materials for Photovoltaic Application" @default.
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