Manipulating properties of matter at the nanoscale is the essence of nanotechnology, which has enabled the realization of quantum dots, nanotubes, metamaterials, and two-dimensional materials with tailored electronic and optical properties. Two-dimensional semiconductors have revealed promising perspectives in nanotechnology. However, the tunability of their physical properties is challenging for semiconductors studied until now. Here we show the ability of morphological manipulation strategies, such as nanotexturing or, at the limit, important surface roughness, to enhance light absorption and the luminescent response of atomically thin indium selenide nanosheets. Besides, quantum-size confinement effects make this two-dimensional semicond...
Indium selenide, a post-transition metal chalcogenide, is a novel two-dimensional (2D) semiconductor...
Recently, III–VI group layered two-dimensional (2D) semiconductors, such as GaS, GaSe, InSe, have co...
Tesis doctoral inédita leída en la Universidad Autónoma de Madrid, Facultad de Ciencias, Departament...
Manipulating properties of matter at the nanoscale is the essence of nanotechnology, which has enabl...
We demonstrate extraordinary photoconductive behavior in two-dimensional (2D) crystalline indium sel...
This thesis presents an investigation of the optoelectronic properties of the two-dimensional (2D) v...
Indium selenide, a post-transition metal chalcogenide, is a novel two-dimensional (2D) semiconductor...
Indium selenide, a post-transition metal chalcogenide, is a novel two-dimensional (2D) semiconductor...
Indium selenide, a post-transition metal chalcogenide, is a novel two-dimensional (2D) semiconductor...
Among the various two-dimensional semiconductors, indium selenide has recently triggered the interes...
We demonstrate that β-In2Se3 layers with thickness ranging from 2.8 – 100 nm can be grown on SiO2/Si...
We demonstrate that β-In2Se3 layers with thickness ranging from 2.8 – 100 nm can be grown on SiO2/Si...
We demonstrate that β-In2Se3 layers with thickness ranging from 2.8 – 100 nm can be grown on SiO2/Si...
This thesis presents an investigation of the optoelectronic properties of the two-dimensional (2D) v...
Indium Selenide (InSe) is one of atomically layered 2D materials attracting broad interests recently...
Indium selenide, a post-transition metal chalcogenide, is a novel two-dimensional (2D) semiconductor...
Recently, III–VI group layered two-dimensional (2D) semiconductors, such as GaS, GaSe, InSe, have co...
Tesis doctoral inédita leída en la Universidad Autónoma de Madrid, Facultad de Ciencias, Departament...
Manipulating properties of matter at the nanoscale is the essence of nanotechnology, which has enabl...
We demonstrate extraordinary photoconductive behavior in two-dimensional (2D) crystalline indium sel...
This thesis presents an investigation of the optoelectronic properties of the two-dimensional (2D) v...
Indium selenide, a post-transition metal chalcogenide, is a novel two-dimensional (2D) semiconductor...
Indium selenide, a post-transition metal chalcogenide, is a novel two-dimensional (2D) semiconductor...
Indium selenide, a post-transition metal chalcogenide, is a novel two-dimensional (2D) semiconductor...
Among the various two-dimensional semiconductors, indium selenide has recently triggered the interes...
We demonstrate that β-In2Se3 layers with thickness ranging from 2.8 – 100 nm can be grown on SiO2/Si...
We demonstrate that β-In2Se3 layers with thickness ranging from 2.8 – 100 nm can be grown on SiO2/Si...
We demonstrate that β-In2Se3 layers with thickness ranging from 2.8 – 100 nm can be grown on SiO2/Si...
This thesis presents an investigation of the optoelectronic properties of the two-dimensional (2D) v...
Indium Selenide (InSe) is one of atomically layered 2D materials attracting broad interests recently...
Indium selenide, a post-transition metal chalcogenide, is a novel two-dimensional (2D) semiconductor...
Recently, III–VI group layered two-dimensional (2D) semiconductors, such as GaS, GaSe, InSe, have co...
Tesis doctoral inédita leída en la Universidad Autónoma de Madrid, Facultad de Ciencias, Departament...