As a versatile class of semiconductors, diketopyrrolopyrrole (DPP)-based conjugated polymers are well suited for applications of next-generation plastic electronics because of their excellent and tunable optoelectronic properties via a rational design of chemical structures. However, it remains a challenge to unravel and eventually influence the correlation between their solution-state aggregation and solid-state microstructure. In this contribution, the solution-state aggregation of high molecular weight PDPP3T is effectively enhanced by solvent selectivity, and a fibril-like nanostructure with short-range and long-range order is generated and tuned in thin films. The predominant role of solvent quality on polymer packing orientation is re...
Transport of charge carriers through conjugated polymers is strongly influenced by the presence and ...
We developed a synthetic strategy for enhancing organic thin-film transistor performances of polymer...
In recent years, the electron-accepting diketopyrrolopyrrole (DPP) moiety has been receiving conside...
As a versatile class of semiconductors, diketopyrrolopyrrole (DPP)-based conjugated polymers are wel...
Efficient charge carrier transport in organic field-effect transistors (OFETs) often requires thin f...
In this work, we investigate the effect of pre-aggregated solutions of diketopyrrolopyrrole (DPP)-ba...
A donor-acceptor polymer semiconductor, PDQT, comprising diketopyrrolopyrrole (DPP) and β-unsubstitu...
We describe a series of highly soluble diketo pyrrolo-pyrrole (DPP)-bithiophene copolymers exhibitin...
Side chain engineering of conjugated donor-acceptor polymers is a new way to manipulate their optoel...
The solid-state molecular orientation of conjugated polymers is of vital importance for their charge...
Conjugated polymers have emerged as promising materials for next-generation electronics. However, in...
Electron donor (D)–acceptor (A)-type conjugated polymers (CPs) have emerged as promising semiconduct...
Electron donor (D)-acceptor (A)-type conjugated polymers (CPs) have emerged as promising semiconduct...
The primary role of substituted side chains in organic semiconductors is to increase their solubilit...
To achieve extremely high planarity and processability simultaneously, we have newly designed and sy...
Transport of charge carriers through conjugated polymers is strongly influenced by the presence and ...
We developed a synthetic strategy for enhancing organic thin-film transistor performances of polymer...
In recent years, the electron-accepting diketopyrrolopyrrole (DPP) moiety has been receiving conside...
As a versatile class of semiconductors, diketopyrrolopyrrole (DPP)-based conjugated polymers are wel...
Efficient charge carrier transport in organic field-effect transistors (OFETs) often requires thin f...
In this work, we investigate the effect of pre-aggregated solutions of diketopyrrolopyrrole (DPP)-ba...
A donor-acceptor polymer semiconductor, PDQT, comprising diketopyrrolopyrrole (DPP) and β-unsubstitu...
We describe a series of highly soluble diketo pyrrolo-pyrrole (DPP)-bithiophene copolymers exhibitin...
Side chain engineering of conjugated donor-acceptor polymers is a new way to manipulate their optoel...
The solid-state molecular orientation of conjugated polymers is of vital importance for their charge...
Conjugated polymers have emerged as promising materials for next-generation electronics. However, in...
Electron donor (D)–acceptor (A)-type conjugated polymers (CPs) have emerged as promising semiconduct...
Electron donor (D)-acceptor (A)-type conjugated polymers (CPs) have emerged as promising semiconduct...
The primary role of substituted side chains in organic semiconductors is to increase their solubilit...
To achieve extremely high planarity and processability simultaneously, we have newly designed and sy...
Transport of charge carriers through conjugated polymers is strongly influenced by the presence and ...
We developed a synthetic strategy for enhancing organic thin-film transistor performances of polymer...
In recent years, the electron-accepting diketopyrrolopyrrole (DPP) moiety has been receiving conside...