We demonstrate a simple low-cost method of preparation of layered devices for opto- and thermoelectric applications. The devices consist Of a functional Bi2Se3 layer of randomly oriented nanoplates and flexible nanobelts enclosed between two flat indium tin oxide (ITO) electrodes. The number of functional interconnections between the ITO electrodes and correspondingly the efficiency of the device can be increased by gradual nanoelectromechanical (NEM) switching of flexible individual Bi2Se3 nanobelts in the circuit. NEM switching is achieved through applying an external voltage to the device. For the first time, we investigate in situ NEM switching and breakdown parameters of Bi2Se3 nanobelts, visualize the processes occurring in the device...
The cost-effective conversion of low-grade heat into electricity using thermoelectric devices requir...
Abrupt switching behavior and near-zero leakage current of nanoelectromechanical (NEM) switches are ...
Bi2Se3 nanovadu integrēšana nanoelektromeāniskās ierīcēs un to raksturošana. Dzene E., zinātniskie v...
We demonstrate a simple low-cost method of preparation of layered devices for opto- and thermoelectr...
The use of phase-change materials for a range of exciting new optoelectronic applications from artif...
Thermoelectric power generators and coolers have many advantages over conventional refrigerators and...
Classical CMOS device downscaling has been faced with major issues since we reached the sub-100nm te...
Recently, several research groups presented bistable two-terminal nanoelectromechanical switches bas...
Electrostatically actuated nanobeam-based electromechanical switches have shown promise for versatil...
Multilayer nanowire arrays of a new heterogeneous thermoelectric material, Bi(2)Te(2)Se/Te, were suc...
Nanostructuration of thermoelectric materials seems to be the solution for their low efficiency gene...
The use of phase-change materials for a range of exciting new optoelectronic applications from artif...
A novel fabrication process for nanostructures for thermoelectric microgenerators, based on a combin...
The paper reports on the characterization of bipolar resistive switching materials and their integra...
Thermoelectric materials have attracted enormous academic and industrial interest recently due to th...
The cost-effective conversion of low-grade heat into electricity using thermoelectric devices requir...
Abrupt switching behavior and near-zero leakage current of nanoelectromechanical (NEM) switches are ...
Bi2Se3 nanovadu integrēšana nanoelektromeāniskās ierīcēs un to raksturošana. Dzene E., zinātniskie v...
We demonstrate a simple low-cost method of preparation of layered devices for opto- and thermoelectr...
The use of phase-change materials for a range of exciting new optoelectronic applications from artif...
Thermoelectric power generators and coolers have many advantages over conventional refrigerators and...
Classical CMOS device downscaling has been faced with major issues since we reached the sub-100nm te...
Recently, several research groups presented bistable two-terminal nanoelectromechanical switches bas...
Electrostatically actuated nanobeam-based electromechanical switches have shown promise for versatil...
Multilayer nanowire arrays of a new heterogeneous thermoelectric material, Bi(2)Te(2)Se/Te, were suc...
Nanostructuration of thermoelectric materials seems to be the solution for their low efficiency gene...
The use of phase-change materials for a range of exciting new optoelectronic applications from artif...
A novel fabrication process for nanostructures for thermoelectric microgenerators, based on a combin...
The paper reports on the characterization of bipolar resistive switching materials and their integra...
Thermoelectric materials have attracted enormous academic and industrial interest recently due to th...
The cost-effective conversion of low-grade heat into electricity using thermoelectric devices requir...
Abrupt switching behavior and near-zero leakage current of nanoelectromechanical (NEM) switches are ...
Bi2Se3 nanovadu integrēšana nanoelektromeāniskās ierīcēs un to raksturošana. Dzene E., zinātniskie v...