Organic–inorganic nanocomposite films formed from blends of small-molecule organic semiconductors and colloidal quantum dots are attractive candidates for high efficiency, low-cost solar energy harvesting devices. Understanding and controlling the self-assembly of the resulting organic–inorganic nanocomposite films is crucial in optimising device performance, not only at a lab-scale but for large-scale, high-throughput printing and coating methods. Here, in situ grazing incidence X-ray scattering (GIXS) gives direct insights into how small-molecule organic semiconductors and colloidal quantum dots self-assemble during blade coating. Results show that for two blends separated only by a small difference in the structure of the small molecule ...
Broadly described by conductive π-conjugated cores with electronically-inert solubilizing groups, so...
Colloidal quantum dots are a class of solution processed semiconductors with good prospects for phot...
Colloidal quantum dot (CQD) photovoltaic devices have improved rapidly over the past decade of resea...
Controlling the dispersibility of crystalline inorganic quantum dots (QD) within organic-QD nanocomp...
Controlling the dispersibility of crystalline inorganic quantum dots (QD) within organic-QD nanocomp...
Nanocrystal quantum dots (QD) functionalised with active organic ligands hold significant promise as...
Hybrid small-molecule/quantum dot films have the potential to reduce thermalization losses in single...
Colloidal PbS quantum dots (QDs) are attractive for solution-processed thin-film optoelectronic appl...
Controlling the dispersibility of crystalline inorganic quantum dots (QD) within organic-QD nanocomp...
Controlling the dispersibility of nanocrystalline inorganic quantum dots (QDs) within organic semico...
Conjugated organic materials have the remarkable ability to absorb and emit light and transport elec...
The power conversion efficiency in a conjugated polymer-functionalized fullerene bulk heterojunction...
Blends comprising organic semiconductors and inorganic quantum-dots (QDs) are relevant for many opto...
The assembly of semiconductor nanoparticles, quantum dots (QDs), into dense crystalline nanostructur...
As quantum dot (QD) synthesis techniques and device architectures advance, it has become increasingl...
Broadly described by conductive π-conjugated cores with electronically-inert solubilizing groups, so...
Colloidal quantum dots are a class of solution processed semiconductors with good prospects for phot...
Colloidal quantum dot (CQD) photovoltaic devices have improved rapidly over the past decade of resea...
Controlling the dispersibility of crystalline inorganic quantum dots (QD) within organic-QD nanocomp...
Controlling the dispersibility of crystalline inorganic quantum dots (QD) within organic-QD nanocomp...
Nanocrystal quantum dots (QD) functionalised with active organic ligands hold significant promise as...
Hybrid small-molecule/quantum dot films have the potential to reduce thermalization losses in single...
Colloidal PbS quantum dots (QDs) are attractive for solution-processed thin-film optoelectronic appl...
Controlling the dispersibility of crystalline inorganic quantum dots (QD) within organic-QD nanocomp...
Controlling the dispersibility of nanocrystalline inorganic quantum dots (QDs) within organic semico...
Conjugated organic materials have the remarkable ability to absorb and emit light and transport elec...
The power conversion efficiency in a conjugated polymer-functionalized fullerene bulk heterojunction...
Blends comprising organic semiconductors and inorganic quantum-dots (QDs) are relevant for many opto...
The assembly of semiconductor nanoparticles, quantum dots (QDs), into dense crystalline nanostructur...
As quantum dot (QD) synthesis techniques and device architectures advance, it has become increasingl...
Broadly described by conductive π-conjugated cores with electronically-inert solubilizing groups, so...
Colloidal quantum dots are a class of solution processed semiconductors with good prospects for phot...
Colloidal quantum dot (CQD) photovoltaic devices have improved rapidly over the past decade of resea...