Nanomaterials produced from the bottom-up assembly of nanocrystals may incorporate ~1020–1021 cm–3 not fully coordinated surface atoms, i.e., ~1020–1021 cm–3 potential donor or acceptor states that can strongly affect transport properties. Therefore, to exploit the full potential of nanocrystal building blocks to produce functional nanomaterials and thin films, a proper control of their surface chemistry is required. Here, we analyze how the ligand stripping procedure influences the charge and heat transport properties of sintered PbSe nanomaterials produced from the bottom-up assembly of colloidal PbSe nanocrystals. First, we show that the removal of the native organic ligands by thermal decomposition in an inert atmosphere leaves relative...
We studied charge carrier photogeneration, cooling, carrier multiplication (CM) and charge mobility ...
The bottom-up assembly of colloidal nanocrystals is a versatile methodology to produce composite nan...
Semiconductor nanocrystals are promising materials for printed optoelectronic devices, but their hig...
Nanomaterials produced from the bottom-up assembly of nanocrystals may incorporate ∼1020–1021 cm–3 n...
Arrays of ligand-stabilized colloidal nanocrystals with size-tunable electronic structure are promis...
he efficient conversion between thermal and electrical energy by means of durable, silent and scalab...
Thermoelectrics are solid-state materials with the ability to directly convert heat to electricity a...
We have determined the effect of shape on the charge transport characteristics of nanocrystals. Our ...
A simple and effective method to introduce precise amounts of doping in nanomaterials produced from ...
Thermoelectric materials enable the direct conversion between heat and electricity. SnTe is a promis...
We present a systematic study on the effect of surface chemistry on thermal transport in colloidal n...
We introduce a method to process colloidal PbSe nanocrystals (NCs) into inorganic NC thin films usin...
This is an open access article published under an ACS AuthorChoice License. See Standard ACS AuthorC...
The bottom-up assembly of nanocrystals provides access to a three-dimensional composition control at...
Methodologies that involve the use of nanoparticles as “artificial atoms” to rationally build materi...
We studied charge carrier photogeneration, cooling, carrier multiplication (CM) and charge mobility ...
The bottom-up assembly of colloidal nanocrystals is a versatile methodology to produce composite nan...
Semiconductor nanocrystals are promising materials for printed optoelectronic devices, but their hig...
Nanomaterials produced from the bottom-up assembly of nanocrystals may incorporate ∼1020–1021 cm–3 n...
Arrays of ligand-stabilized colloidal nanocrystals with size-tunable electronic structure are promis...
he efficient conversion between thermal and electrical energy by means of durable, silent and scalab...
Thermoelectrics are solid-state materials with the ability to directly convert heat to electricity a...
We have determined the effect of shape on the charge transport characteristics of nanocrystals. Our ...
A simple and effective method to introduce precise amounts of doping in nanomaterials produced from ...
Thermoelectric materials enable the direct conversion between heat and electricity. SnTe is a promis...
We present a systematic study on the effect of surface chemistry on thermal transport in colloidal n...
We introduce a method to process colloidal PbSe nanocrystals (NCs) into inorganic NC thin films usin...
This is an open access article published under an ACS AuthorChoice License. See Standard ACS AuthorC...
The bottom-up assembly of nanocrystals provides access to a three-dimensional composition control at...
Methodologies that involve the use of nanoparticles as “artificial atoms” to rationally build materi...
We studied charge carrier photogeneration, cooling, carrier multiplication (CM) and charge mobility ...
The bottom-up assembly of colloidal nanocrystals is a versatile methodology to produce composite nan...
Semiconductor nanocrystals are promising materials for printed optoelectronic devices, but their hig...