Colloidal quantum dot films have seen rapid progress as active materials in photodetection, light emission, and photovoltaics. Their processing from the solution phase makes them an attractive option for these applications due to the expected cost reductions associated with liquid-phase material deposition. Colloidally stable nanoparticles capped using long, insulating aliphatic ligands are used to form semiconducting, insoluble films <i>via</i> a solid-state ligand exchange in which the original ligands are replaced with short bifunctional ligands. Here we show that this ligand exchange can have unintended and undesired side effects: a high molecular weight complex can form, containing both lead oleate and the shorter conductive ligand, an...
High global demand for energy coupled with dwindling fossil fuel supply has driven the development o...
Phase-transfer exchange of pristine organic ligands for inorganic ones is essential for the integrat...
Understanding colloidal stabilization can influence the design of optoelectronic devices and enable ...
Colloidal quantum dot (CQD) photovoltaic devices have improved rapidly over the past decade of resea...
Bandtail states in disordered semiconductor materials result in losses in open-circuit voltage (Voc)...
Bandtail states in disordered semiconductor materials result in losses in open-circuit voltage (Voc)...
Colloidal quantum dots (CQDs) are promising solution-processed infrared-absorbing materials for opto...
n the past decade, colloidal quantumdot (CQDs) solids have attracted much inter-est for their promis...
Colloidal quantum dots are a class of solution processed semiconductors with good prospects for phot...
The use of colloidal quantum dots (QDs) for photovoltaic energy conversion is a nascent field that h...
Colloidal quantum dots (CQDs) are an inexpensive and solution processable photovoltaic(PV) material ...
Colloidal quantum dots (CQDs) are an inexpensive and solution processable photovoltaic(PV) material ...
High global demand for energy coupled with dwindling fossil fuel supply has driven the development o...
olloidal quantum dots (QDs) possess a uniquely tunable set of electronic properties that has generat...
Colloidal quantum dots are a class of solution-processed semiconductors with good prospects for phot...
High global demand for energy coupled with dwindling fossil fuel supply has driven the development o...
Phase-transfer exchange of pristine organic ligands for inorganic ones is essential for the integrat...
Understanding colloidal stabilization can influence the design of optoelectronic devices and enable ...
Colloidal quantum dot (CQD) photovoltaic devices have improved rapidly over the past decade of resea...
Bandtail states in disordered semiconductor materials result in losses in open-circuit voltage (Voc)...
Bandtail states in disordered semiconductor materials result in losses in open-circuit voltage (Voc)...
Colloidal quantum dots (CQDs) are promising solution-processed infrared-absorbing materials for opto...
n the past decade, colloidal quantumdot (CQDs) solids have attracted much inter-est for their promis...
Colloidal quantum dots are a class of solution processed semiconductors with good prospects for phot...
The use of colloidal quantum dots (QDs) for photovoltaic energy conversion is a nascent field that h...
Colloidal quantum dots (CQDs) are an inexpensive and solution processable photovoltaic(PV) material ...
Colloidal quantum dots (CQDs) are an inexpensive and solution processable photovoltaic(PV) material ...
High global demand for energy coupled with dwindling fossil fuel supply has driven the development o...
olloidal quantum dots (QDs) possess a uniquely tunable set of electronic properties that has generat...
Colloidal quantum dots are a class of solution-processed semiconductors with good prospects for phot...
High global demand for energy coupled with dwindling fossil fuel supply has driven the development o...
Phase-transfer exchange of pristine organic ligands for inorganic ones is essential for the integrat...
Understanding colloidal stabilization can influence the design of optoelectronic devices and enable ...