We present the first semiconductor nanocrystal films of nanoscale dimensions that are electrically conductive and crack-free. These films make it possible to study the electrical properties intrinsic to the nanocrystals unimpeded by defects such as cracking and clustering that typically exist in larger-scale films. We find that the electrical conductivity of the nanoscale films is 180 times higher than that of drop-cast, microscopic films made of the same type of nanocrystal. Our technique for forming the nanoscale films is based on electron-beam lithography and a lift-off process. The patterns have dimensions as small as 30 nm and are positioned on a surface with 30 nm precision. The method is flexible in the choice of nanocrystal core–she...
Colloidal semiconductor nanocrystals (NCs) have been shown to be promising materials for electronic ...
Semiconductor nanocrystals have emerged as promising materials for light harvesting and production o...
We report the results of charge transport studies on single CdTe nanocrystals contacted via evaporat...
We present the first semiconductor nanocrystal films of nanoscale dimensions that are electrically c...
Nanocrystal films may be used as detector material in sensors, as charge storage or conducting chann...
Application of semiconductor nanocrystals in optoelectronic devices requires an understanding not on...
Semiconducting thin films made from nanocrystals hold potential as composite hybrid materials with n...
Strategies for the device integration and electrical characterization of individual colloidal semico...
Growing fossil fuels consumption compels researchers to find new alternative pathways to produce ene...
Semiconductor and metallic nanocrystals exhibit interesting electronic transport behavior as a resul...
This thesis explores colloidal semiconductor nanocrystal solutions as a feedstock for creating thin ...
Nanocrystal solids represent an exciting new class of materials. These are often referred to as art...
Colloidal semiconductor nanocrystals (NCs) have been shown to be promising materials for electronic ...
Optoelectronic devices incorporating semiconducting nanocrystals are promising for many potential ap...
We studied charge carrier photogeneration, cooling, carrier multiplication (CM) and charge mobility ...
Colloidal semiconductor nanocrystals (NCs) have been shown to be promising materials for electronic ...
Semiconductor nanocrystals have emerged as promising materials for light harvesting and production o...
We report the results of charge transport studies on single CdTe nanocrystals contacted via evaporat...
We present the first semiconductor nanocrystal films of nanoscale dimensions that are electrically c...
Nanocrystal films may be used as detector material in sensors, as charge storage or conducting chann...
Application of semiconductor nanocrystals in optoelectronic devices requires an understanding not on...
Semiconducting thin films made from nanocrystals hold potential as composite hybrid materials with n...
Strategies for the device integration and electrical characterization of individual colloidal semico...
Growing fossil fuels consumption compels researchers to find new alternative pathways to produce ene...
Semiconductor and metallic nanocrystals exhibit interesting electronic transport behavior as a resul...
This thesis explores colloidal semiconductor nanocrystal solutions as a feedstock for creating thin ...
Nanocrystal solids represent an exciting new class of materials. These are often referred to as art...
Colloidal semiconductor nanocrystals (NCs) have been shown to be promising materials for electronic ...
Optoelectronic devices incorporating semiconducting nanocrystals are promising for many potential ap...
We studied charge carrier photogeneration, cooling, carrier multiplication (CM) and charge mobility ...
Colloidal semiconductor nanocrystals (NCs) have been shown to be promising materials for electronic ...
Semiconductor nanocrystals have emerged as promising materials for light harvesting and production o...
We report the results of charge transport studies on single CdTe nanocrystals contacted via evaporat...