Atomic layer deposition of stable 2D materials
Following the graphene isolation, strong interest in two dimensional (2D) materials has been
driven by their outstanding properties. Their typical intrinsic structure, including strong in …
driven by their outstanding properties. Their typical intrinsic structure, including strong in …
Metal chalcogenides on silicon photocathodes for efficient water splitting: A mini overview
In the photoelectrochemical (PEC) water splitting (WS) reactions, a photon is absorbed by a
semiconductor, generating electron-hole pairs which are transferred across the …
semiconductor, generating electron-hole pairs which are transferred across the …
An ultra-thin, un-doped NiO hole transporting layer of highly efficient (16.4%) organic–inorganic hybrid perovskite solar cells
NiO is a wide band gap p-type oxide semiconductor and has potential for applications in
solar energy conversion as a hole-transporting layer (HTL). It also has good optical …
solar energy conversion as a hole-transporting layer (HTL). It also has good optical …
Atomic layer deposition of two-dimensional layered materials: processes, growth mechanisms, and characteristics
Since the discovery of graphene, there has been an ever-increasing interest in two-
dimensional (2D) layered materials with exceptional properties. To this end, a variety of …
dimensional (2D) layered materials with exceptional properties. To this end, a variety of …
Wafer-scale growth of MoS 2 thin films by atomic layer deposition
The wafer-scale synthesis of MoS2 layers with precise thickness controllability and excellent
uniformity is essential for their application in the nanoelectronics industry. Here, we …
uniformity is essential for their application in the nanoelectronics industry. Here, we …
Edge-On MoS2 Thin Films by Atomic Layer Deposition for Understanding the Interplay between the Active Area and Hydrogen Evolution Reaction
The edge sites of molybdenum disulfide (MoS2) have been shown to be efficient
electrocatalysts for the hydrogen evolution reaction (HER). To utilize these structures, two …
electrocatalysts for the hydrogen evolution reaction (HER). To utilize these structures, two …
Significantly enhanced thermoelectric figure of merit of p-type Mg 3 Sb 2-based Zintl phase compounds via nanostructuring and employing high energy mechanical …
Several nanostructuring methods have been demonstrated to produce a variety of
nanostructured materials, and these methods are well recognized as effective paradigms for …
nanostructured materials, and these methods are well recognized as effective paradigms for …
Impact of the Topological Surface State on the Thermoelectric Transport in Sb2Te3 Thin Films
Ab initio electronic structure calculations based on density functional theory and tight-
binding methods for the thermoelectric properties of p-type Sb2Te3 films are presented. The …
binding methods for the thermoelectric properties of p-type Sb2Te3 films are presented. The …
Bi2Te3-MWCNT nanocomposite: an efficient thermoelectric material
Bi 2 Te 3–MWCNT nanocomposite has been synthesized by hydrothermal technique and
demonstrate the role of MWCNT for thermoelectric properties. Herein, MWCNT has been …
demonstrate the role of MWCNT for thermoelectric properties. Herein, MWCNT has been …
Superior room-temperature power factor in GeTe systems via multiple valence band convergence to a narrow energy range
T Oku, H Funashima, S Kawaguchi, Y Kubota… - Materials Today …, 2021 - Elsevier
GeTe systems are excellent p-type thermoelectric materials at medium temperatures (500–
800 K). Recently, their electronic properties were enhanced by band convergence of L and Σ …
800 K). Recently, their electronic properties were enhanced by band convergence of L and Σ …