Low bandgap n-type organic semiconductor (n-OS) ITIC has attracted great attention for the application as an acceptor with medium bandgap p-type conjugated polymer as donor in nonfullerene polymer solar cells (PSCs) because of its attractive photovoltaic performance. Here we report a modification on the molecular structure of ITIC by side-chain isomerization with meta-alkyl-phenyl substitution, m-ITIC, to further improve its photovoltaic performance. In a comparison with its isomeric counterpart ITIC with para-alkyl-phenyl substitution, m-ITIC shows a higher film absorption coefficient, a larger crystalline coherence, and higher electron mobility. These inherent advantages of m-ITIC resulted in a higher power conversion efficiency (PCE) of ...
Polymeric solar cells (PSCs) have attracted considerable attention in recent years due to their pote...
We develop an efficient fused-ring electron acceptor (ITIC-Th) based on indacenodithieno [3,2-b]-thi...
Two novel high gap donor polymers – PBDTTSi-TzBI and PBDTTS-TzBI, based on imide-fused benzotriazole...
A new n-type organic semiconductor (n-OS) acceptor IDTPC with n-hexyl side chains is developed. Comp...
Non-fullerene polymer solar cells (PSCs) with solution-processable n-type organic semiconductor (n-O...
The previously reported nonfullerene small molecule ITIC-SF achieved via side chain tuning, promotes...
With the development of non-fullerene organic solar cells, more and more conductive materials are av...
Side chains of photovoltaic materials play an important role in determining charge transport propert...
A series of A-pi-D-pi-A-type nonfullerene acceptors (NFAs) was designed and synthesized with the goa...
Nonfullerene-based organic solar cells (OSCs) have made a huge breakthrough in the recent years. Int...
Next-generation organic photovoltaic technology is currently geared towards non-fullerene organic so...
Three <i>n</i>-OS acceptors with <i>E</i><sub>g</sub> values of <1.4 eV were synthesized by introduc...
In the last two years, polymer solar cells (PSCs) developed quickly with n-type organic semiconducto...
Donor-acceptor intermolecular interactions and/or arrangements are key factors determining the perfo...
We design and synthesize a new main-chain-twisted fused-ring narrow band gap n-type organic semicond...
Polymeric solar cells (PSCs) have attracted considerable attention in recent years due to their pote...
We develop an efficient fused-ring electron acceptor (ITIC-Th) based on indacenodithieno [3,2-b]-thi...
Two novel high gap donor polymers – PBDTTSi-TzBI and PBDTTS-TzBI, based on imide-fused benzotriazole...
A new n-type organic semiconductor (n-OS) acceptor IDTPC with n-hexyl side chains is developed. Comp...
Non-fullerene polymer solar cells (PSCs) with solution-processable n-type organic semiconductor (n-O...
The previously reported nonfullerene small molecule ITIC-SF achieved via side chain tuning, promotes...
With the development of non-fullerene organic solar cells, more and more conductive materials are av...
Side chains of photovoltaic materials play an important role in determining charge transport propert...
A series of A-pi-D-pi-A-type nonfullerene acceptors (NFAs) was designed and synthesized with the goa...
Nonfullerene-based organic solar cells (OSCs) have made a huge breakthrough in the recent years. Int...
Next-generation organic photovoltaic technology is currently geared towards non-fullerene organic so...
Three <i>n</i>-OS acceptors with <i>E</i><sub>g</sub> values of <1.4 eV were synthesized by introduc...
In the last two years, polymer solar cells (PSCs) developed quickly with n-type organic semiconducto...
Donor-acceptor intermolecular interactions and/or arrangements are key factors determining the perfo...
We design and synthesize a new main-chain-twisted fused-ring narrow band gap n-type organic semicond...
Polymeric solar cells (PSCs) have attracted considerable attention in recent years due to their pote...
We develop an efficient fused-ring electron acceptor (ITIC-Th) based on indacenodithieno [3,2-b]-thi...
Two novel high gap donor polymers – PBDTTSi-TzBI and PBDTTS-TzBI, based on imide-fused benzotriazole...