Nanocrystal quantum dots (QD) functionalised with active organic ligands hold significant promise as solar energy conversion materials, capable of multiexcitonic processes that could improve the efficiencies of single-junction photovoltaic devices. Small-angle X-ray and neutron scattering (SAXS and SANS) were used to characterize the structure of lead sulphide QDs post ligand-exchange with model acene-carboxylic acid ligands (benzoic acid, hydrocinnamic acid and naphthoic acid). Results demonstrate that hydrocinnamic acid and naphthoic acid ligated QDs form monolayer ligand shells, whilst benzoic acid ligated QDs possess ligand shells thicker than a monolayer. Further, the formation of a range of nanocomposite materials through the self-ass...
Nanocrystal quantum dots exhibit size-dependent optoelectronic properties and provide intriguing sci...
Nanocrystal quantum dots are novel materials of great scientific and technological interests. The at...
Improving the efficiency of next-generation solar cells is crucial to their commercialization. This ...
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...
Organic–inorganic nanocomposite films formed from blends of small-molecule organic semiconductors an...
Controlling the dispersibility of crystalline inorganic quantum dots (QD) within organic-QD nanocomp...
The ability to manipulate quantum dot (QD) surfaces is foundational to their technological deploymen...
The ability to manipulate quantum dot (QD) surfaces is foundational to their technological deploymen...
The assembly of semiconductor nanoparticles, quantum dots (QDs), into dense crystalline nanostructur...
This thesis focuses on both the fundamental aspects as well as applications of colloidal semiconduct...
Hybrid small-molecule/quantum dot films have the potential to reduce thermalization losses in single...
Colloidal semiconductor nanoparticles (NPs) contain hundreds to thousands of atoms in a roughly sphe...
Ligands for nanocrystals (NCs) have been widely studied beyond its role as a capping agent to applic...
At the nanoscale, electronic materials can develop size-dependent properties due to quantum-confinem...
Nanocrystal quantum dots exhibit size-dependent optoelectronic properties and provide intriguing sci...
Nanocrystal quantum dots are novel materials of great scientific and technological interests. The at...
Improving the efficiency of next-generation solar cells is crucial to their commercialization. This ...
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...
Organic–inorganic nanocomposite films formed from blends of small-molecule organic semiconductors an...
Controlling the dispersibility of crystalline inorganic quantum dots (QD) within organic-QD nanocomp...
The ability to manipulate quantum dot (QD) surfaces is foundational to their technological deploymen...
The ability to manipulate quantum dot (QD) surfaces is foundational to their technological deploymen...
The assembly of semiconductor nanoparticles, quantum dots (QDs), into dense crystalline nanostructur...
This thesis focuses on both the fundamental aspects as well as applications of colloidal semiconduct...
Hybrid small-molecule/quantum dot films have the potential to reduce thermalization losses in single...
Colloidal semiconductor nanoparticles (NPs) contain hundreds to thousands of atoms in a roughly sphe...
Ligands for nanocrystals (NCs) have been widely studied beyond its role as a capping agent to applic...
At the nanoscale, electronic materials can develop size-dependent properties due to quantum-confinem...
Nanocrystal quantum dots exhibit size-dependent optoelectronic properties and provide intriguing sci...
Nanocrystal quantum dots are novel materials of great scientific and technological interests. The at...
Improving the efficiency of next-generation solar cells is crucial to their commercialization. This ...