Abstract Water-based conductive inks are vital for the sustainable manufacturing and widespread adoption of organic electronic devices. Traditional methods to produce waterborne conductive polymers involve modifying their backbone with hydrophilic side chains or using surfactants to form and stabilize aqueous nanoparticle dispersions. However, these chemical approaches are not always feasible and can lead to poor material/device performance. Here, we demonstrate that ground-state electron transfer (GSET) between donor and acceptor polymers allows the processing of water-insoluble polymers from water. This approach enables macromolecular charge-transfer salts with 10,000× higher electrical conductivities than pristine polymers, low work func...
Three new ionic polythiophene derivatives, soluble in polar solvents, are synthesized with good yiel...
Covalent organic polymers (COPs) have emerged as a unique class of luminescent polymers with pre-des...
Non-fullerene acceptors are now capable of being used in high efficiency bulk heterojunction (BHJ) d...
Water ingress is one of the major environmental stresses to cause the degradation of device performa...
Solid-state dye-sensitized solar cells (ss-dsscs) are promising candidates for future low cost photo...
The ability to process conjugated polymers via aqueous solution is highly advantageous for reducing ...
Organic thin film photovoltaics based on bulk-heterojunction donor-acceptor combinations have receiv...
Electron acceptor degradation of organic solar cells is considered a main contributor to performance...
This thesis focuses on adding small-molecule acceptor materials to semiconducting polymer films. Sem...
Electrochemistry is an old but still flourishing field of research due to the importance of the effi...
All-polymer solar cells (APSC) are a class of organic solar cells in which hole and electron transpo...
The cost of the present generation of inorganic silicon solar cells is very high and further breakth...
Electron acceptor degradation of organic solar cells is considered a main contributor to performance...
Solid-state dye-sensitized solar cells (ssDSSCs) and recently developed perovskite solar cells (PSCs...
For photovoltaic cells made with pure conjugated polymers, energy conversion efficiencies were typic...
Three new ionic polythiophene derivatives, soluble in polar solvents, are synthesized with good yiel...
Covalent organic polymers (COPs) have emerged as a unique class of luminescent polymers with pre-des...
Non-fullerene acceptors are now capable of being used in high efficiency bulk heterojunction (BHJ) d...
Water ingress is one of the major environmental stresses to cause the degradation of device performa...
Solid-state dye-sensitized solar cells (ss-dsscs) are promising candidates for future low cost photo...
The ability to process conjugated polymers via aqueous solution is highly advantageous for reducing ...
Organic thin film photovoltaics based on bulk-heterojunction donor-acceptor combinations have receiv...
Electron acceptor degradation of organic solar cells is considered a main contributor to performance...
This thesis focuses on adding small-molecule acceptor materials to semiconducting polymer films. Sem...
Electrochemistry is an old but still flourishing field of research due to the importance of the effi...
All-polymer solar cells (APSC) are a class of organic solar cells in which hole and electron transpo...
The cost of the present generation of inorganic silicon solar cells is very high and further breakth...
Electron acceptor degradation of organic solar cells is considered a main contributor to performance...
Solid-state dye-sensitized solar cells (ssDSSCs) and recently developed perovskite solar cells (PSCs...
For photovoltaic cells made with pure conjugated polymers, energy conversion efficiencies were typic...
Three new ionic polythiophene derivatives, soluble in polar solvents, are synthesized with good yiel...
Covalent organic polymers (COPs) have emerged as a unique class of luminescent polymers with pre-des...
Non-fullerene acceptors are now capable of being used in high efficiency bulk heterojunction (BHJ) d...