The emergence and development of two-dimensional (2D) materials has provided a new direction for enhancing the thermoelectric (TE) performance due to their unique structural, physical and chemical properties. However, the TE performance measurement of 2D materials is a long-standing challenge owing to the experimental difficulties of precise control in samples and high demand in apparatus. Until now, there is no universal methodology for measuring the dimensionless TE figure of merit (ZT) (the core parameter for evaluating TE performance) of 2D materials systematically in experiments. Raman spectroscopy, with its rapid and nondestructive properties for probing samples, is undoubtedly a powerful tool for characterizing 2D materials as it is ...
The ability to measure intrinsic thermal conductivity via a non-contact, non-destructive process is ...
With novel electronic and optical properties, two-dimensional (2D) materials and their heterogeneous...
The ongoing shrinkage in the size of two-dimensional (2D) electronic circuitry results in high power...
Two-dimensional (2D) materials are widely used in microelectronic devices due to their excellent opt...
In recent years, a steady increase in the need for packing more energy in smaller devices had driven...
The discovery of graphene and its analog, such as MoS2, has boosted research. The thermal transport ...
Thermoelectric materials are useful for a wide range of applications like waste heat removal, solid ...
We review the potential and limitations of a temperature-dependent Raman Scattering Technique (RST) ...
© COPYRIGHT SPIE. Downloading of the abstract is permitted for personal use only. We review the pot...
Nanoparticles, two-dimensional (2D) materials, and carbon fibers are widely used in nano electronic ...
Crystalline thin films have found their applications in a broad range of industrial and research are...
Niobium diselenide (NbSe2) possess a high electrical conductivity and low thermal conductivity, maki...
With the growing demand for high performance computing, we are pushing for higher performance integr...
Quasi two-dimensional (2D) materials obtained by the "graphene-like" exfoliation attracted tremendou...
Understanding phonon transport and thermal conductivity of layered materials is not only critical fo...
The ability to measure intrinsic thermal conductivity via a non-contact, non-destructive process is ...
With novel electronic and optical properties, two-dimensional (2D) materials and their heterogeneous...
The ongoing shrinkage in the size of two-dimensional (2D) electronic circuitry results in high power...
Two-dimensional (2D) materials are widely used in microelectronic devices due to their excellent opt...
In recent years, a steady increase in the need for packing more energy in smaller devices had driven...
The discovery of graphene and its analog, such as MoS2, has boosted research. The thermal transport ...
Thermoelectric materials are useful for a wide range of applications like waste heat removal, solid ...
We review the potential and limitations of a temperature-dependent Raman Scattering Technique (RST) ...
© COPYRIGHT SPIE. Downloading of the abstract is permitted for personal use only. We review the pot...
Nanoparticles, two-dimensional (2D) materials, and carbon fibers are widely used in nano electronic ...
Crystalline thin films have found their applications in a broad range of industrial and research are...
Niobium diselenide (NbSe2) possess a high electrical conductivity and low thermal conductivity, maki...
With the growing demand for high performance computing, we are pushing for higher performance integr...
Quasi two-dimensional (2D) materials obtained by the "graphene-like" exfoliation attracted tremendou...
Understanding phonon transport and thermal conductivity of layered materials is not only critical fo...
The ability to measure intrinsic thermal conductivity via a non-contact, non-destructive process is ...
With novel electronic and optical properties, two-dimensional (2D) materials and their heterogeneous...
The ongoing shrinkage in the size of two-dimensional (2D) electronic circuitry results in high power...