The thermodynamic aspects of various 2D materials are explored using Density Functional Theory (DFT). Various metal chalcogenides (MX2, M = metal, chalcogen X = S, Se, Te) are investigated with respect to their interaction and stability under different ambient conditions met in the integration process of a transistor device. Their interaction with high-κ dielectrics is also addressed, in order to assess their possible integration in Complementary Metal Oxide Semiconductor (CMOS) field effect transistors. 2D materials show promise for high performance nanoelectronic devices, but the presence of defects (vacancies, grain boundaries,…) can significantly impact their electronic properties. To assess the impact of defects, their enthalpies of fo...
Atomic structures and electronic properties of MoS2/HfO2 defective interfaces are investigated exten...
Atomic structures and electronic properties of MoS2/HfO2 defective interfaces are investigated exten...
The discovery of graphene and its unprecedented properties inspired an extraordinary increase in res...
The growing needs of the semiconductor industry are pushing Silicon based transistor devices to thei...
Chalcogen vacancies are generally considered to be the most common point defects in transition metal...
Chalcogen vacancies are generally considered to be the most common point defects in transition metal...
ABSTRACT: Using density-functional theory calculations, we study the stability and electronic proper...
Transition Metal Dichalcogenides (TMDs) are two-dimensional materials of type MX2, where M is a tran...
One of the goals in making better devices is to achieve the desired functionality in materials that ...
Transition Metal Dichalcogenides (TMDs) are two-dimensional materials of type MX2, where M is a tran...
Special Issue: Two-dimensional Materials: Electronic Structure and Many-Body Effects.Single- and few...
Defects in the functional oxides play an important role in electronic devices like metal oxide semic...
Two-dimensional (2D) transition metal dichalcogenides (TMDs) are layered semiconductors with unique ...
Chalcogen vacancies are generally considered to be the most common point defects in transition metal...
The discovery of graphene and its unprecedented properties inspired an extraordinary increase in res...
Atomic structures and electronic properties of MoS2/HfO2 defective interfaces are investigated exten...
Atomic structures and electronic properties of MoS2/HfO2 defective interfaces are investigated exten...
The discovery of graphene and its unprecedented properties inspired an extraordinary increase in res...
The growing needs of the semiconductor industry are pushing Silicon based transistor devices to thei...
Chalcogen vacancies are generally considered to be the most common point defects in transition metal...
Chalcogen vacancies are generally considered to be the most common point defects in transition metal...
ABSTRACT: Using density-functional theory calculations, we study the stability and electronic proper...
Transition Metal Dichalcogenides (TMDs) are two-dimensional materials of type MX2, where M is a tran...
One of the goals in making better devices is to achieve the desired functionality in materials that ...
Transition Metal Dichalcogenides (TMDs) are two-dimensional materials of type MX2, where M is a tran...
Special Issue: Two-dimensional Materials: Electronic Structure and Many-Body Effects.Single- and few...
Defects in the functional oxides play an important role in electronic devices like metal oxide semic...
Two-dimensional (2D) transition metal dichalcogenides (TMDs) are layered semiconductors with unique ...
Chalcogen vacancies are generally considered to be the most common point defects in transition metal...
The discovery of graphene and its unprecedented properties inspired an extraordinary increase in res...
Atomic structures and electronic properties of MoS2/HfO2 defective interfaces are investigated exten...
Atomic structures and electronic properties of MoS2/HfO2 defective interfaces are investigated exten...
The discovery of graphene and its unprecedented properties inspired an extraordinary increase in res...