Holding novel physical properties, high flexibility and strong integration ability with Si-based electronic devices, two-dimensional (2D) non-layered materials have received considerable attentions in recent years. To achieve the 2D anisotropic growth, various strategies have been developed. And a variety of applications have been demonstrated. This review provides an overview on the recent progress of this material family. The scope will cover the preparation strategies, including dry methods and wet chemical approaches, as well as the applications in catalysis, energy conversion and storage, optoelectronic devices and topological crystalline insulators. Conclusion and future perspectives are also given
My Ph.D research interest is applying standard micro/nano synthesis, fabrication, and processing equ...
Two dimensional (2D) materials are single or few atom thick solid materials that exhibit considerabl...
The current research on semiconductor device has pushed the scaling of the devices into sub-10 nanom...
Holding novel physical properties, high flexibility and strong integration ability with Si-based ele...
Since the successful isolation of graphene a little over a decade ago, a wide variety of two-dimensi...
Graphene's success has shown that it is possible to create stable, single and few-atom-thick la...
Discovery of graphene and its astonishing properties have given birth to a new class of materials kn...
Atomic thick layered nanomaterials are of potential interest due to its energetic and unusual physic...
The past few years have seen an explosion of interest in two-dimensional (2D) crystals derived from ...
Modern semiconductor devices have revolutionized wide-ranging technologies such as electronics, ligh...
Group III-VI compounds MIIIXVI (M = Ga, In; X = S, Se, Te) are one class of important 2D layered mat...
The advent of graphene, and more recently of two-dimensional (2D) layered materials, has opened new ...
The rise of two-dimensional (2D) materials research took place following the isolation of graphene i...
Two-dimensional (2D) materials such as graphene, transition metal dichalcogenides (TMDs), and their ...
Research on two-dimensional (2D) materials has been explosively increasing in last seventeen years i...
My Ph.D research interest is applying standard micro/nano synthesis, fabrication, and processing equ...
Two dimensional (2D) materials are single or few atom thick solid materials that exhibit considerabl...
The current research on semiconductor device has pushed the scaling of the devices into sub-10 nanom...
Holding novel physical properties, high flexibility and strong integration ability with Si-based ele...
Since the successful isolation of graphene a little over a decade ago, a wide variety of two-dimensi...
Graphene's success has shown that it is possible to create stable, single and few-atom-thick la...
Discovery of graphene and its astonishing properties have given birth to a new class of materials kn...
Atomic thick layered nanomaterials are of potential interest due to its energetic and unusual physic...
The past few years have seen an explosion of interest in two-dimensional (2D) crystals derived from ...
Modern semiconductor devices have revolutionized wide-ranging technologies such as electronics, ligh...
Group III-VI compounds MIIIXVI (M = Ga, In; X = S, Se, Te) are one class of important 2D layered mat...
The advent of graphene, and more recently of two-dimensional (2D) layered materials, has opened new ...
The rise of two-dimensional (2D) materials research took place following the isolation of graphene i...
Two-dimensional (2D) materials such as graphene, transition metal dichalcogenides (TMDs), and their ...
Research on two-dimensional (2D) materials has been explosively increasing in last seventeen years i...
My Ph.D research interest is applying standard micro/nano synthesis, fabrication, and processing equ...
Two dimensional (2D) materials are single or few atom thick solid materials that exhibit considerabl...
The current research on semiconductor device has pushed the scaling of the devices into sub-10 nanom...