Through the combination of central naphthalene diimide and terminal rhodanine or 1,3-indanedione functionalities, two new non-fullerene electron acceptors, coded as N3 and N4, were designed, synthesized and characterized. Both of the materials exhibited good solubility, thermal stability, and displayed energy levels matching those of the conventional and routinely used donor polymer poly(3-hexyl thiophene) (P3HT). A high power conversion efficiency of 4.76% was obtained in simple, solution-processable bulk-heterojunction devices (P3HT:N3 1:1.2) which is the be st result for central NDI-based small molecular non-fullerene acceptors
Broad spectral coverage over the solar spectrum is necessary for photovoltaic technologies and is a ...
We have designed, synthesized and utilized a new non-fullerene electron acceptor, 9,9'-(9,9-dio...
One of the challenges in the field of organic photovoltaics is developing alternatives to the family...
Two solution processable, non-fullerene electron acceptors, 2,2'-(((2,7-dioctyl-1,3,6,8-tetraox...
Through the conjunction of naphthalenediimide and benzoisoquinoline-dione functionalities, two novel...
Non-fullerene acceptors have attracted great attention as an alternative to fullerene derivatives to...
Herein we present the design, synthesis and characterization of two novel, naphthalene diimide (NDI)...
Non-fullerene acceptors are proving to be effective for high efficiency polymer bulk heterojunction ...
Non-fullerene acceptor (NFA) have great potential to replace fullerene materials and overcome their ...
Power conversion efficiency (PCE) of organic solar cells (OSCs) have gradually improved up to 11.83%...
Through the conjunction of tetraphenylethylene and diketopyrrolopyrrole functionalities, a novel fou...
Two simple semiconducting donor-acceptor-acceptor (D-A 1 -A) modular, small molecule, non-fullerene ...
A homologous series of six novel oligothiophene–naphthalene diimide-based oligomer semiconductors wi...
A novel small molecule, FBR, bearing 3-ethylrhodanine flanking groups was synthesized as a nonfuller...
Due to the low cost, lightness and flexibility, Polymer Solar Cell (PSC) technology is considered on...
Broad spectral coverage over the solar spectrum is necessary for photovoltaic technologies and is a ...
We have designed, synthesized and utilized a new non-fullerene electron acceptor, 9,9'-(9,9-dio...
One of the challenges in the field of organic photovoltaics is developing alternatives to the family...
Two solution processable, non-fullerene electron acceptors, 2,2'-(((2,7-dioctyl-1,3,6,8-tetraox...
Through the conjunction of naphthalenediimide and benzoisoquinoline-dione functionalities, two novel...
Non-fullerene acceptors have attracted great attention as an alternative to fullerene derivatives to...
Herein we present the design, synthesis and characterization of two novel, naphthalene diimide (NDI)...
Non-fullerene acceptors are proving to be effective for high efficiency polymer bulk heterojunction ...
Non-fullerene acceptor (NFA) have great potential to replace fullerene materials and overcome their ...
Power conversion efficiency (PCE) of organic solar cells (OSCs) have gradually improved up to 11.83%...
Through the conjunction of tetraphenylethylene and diketopyrrolopyrrole functionalities, a novel fou...
Two simple semiconducting donor-acceptor-acceptor (D-A 1 -A) modular, small molecule, non-fullerene ...
A homologous series of six novel oligothiophene–naphthalene diimide-based oligomer semiconductors wi...
A novel small molecule, FBR, bearing 3-ethylrhodanine flanking groups was synthesized as a nonfuller...
Due to the low cost, lightness and flexibility, Polymer Solar Cell (PSC) technology is considered on...
Broad spectral coverage over the solar spectrum is necessary for photovoltaic technologies and is a ...
We have designed, synthesized and utilized a new non-fullerene electron acceptor, 9,9'-(9,9-dio...
One of the challenges in the field of organic photovoltaics is developing alternatives to the family...