Functional nanomaterials possess exceptional mechanical, electrical, and optical properties which have significantly benefited their diverse applications to a variety of scientific and engineering problems. In order to fully understand their characteristics and further guide their synthesis and device application, the multiphysical properties of these nanomaterials need to be characterized accurately and efficiently. Among various experimental tools for nanomaterial characterization, scanning electron microscopy- (SEM-) based platforms provide merits of high imaging resolution, accuracy and stability, well-controlled testing conditions, and the compatibility with other high-resolution material characterization techniques (e.g., atomic force...
Modern methods of in situ transmission electron microscopy (TEM) allow one to not only manipulate wi...
The main goal of this thesis has been to apply in-situ Transmission Electron Microscopy (TEM) electr...
There is a wide array of technologically significant materials whose response to electric and magnet...
Functional nanomaterials possess exceptional mechanical, electrical, and optical properties which ha...
In the past decades, in situ scanning electron microscopy (SEM) has become a powerful technique for ...
The unique properties of nanomaterials have made them potential candidates in energy applications. D...
The great effort is being placed in the design of new characterization techniques and the constructi...
The scanning electron microscope (SEM) can be used to study and characterize a wide variety of mater...
The relationship between property and structure is one of the most important fundamental questions i...
Abstract New materials and nanostructures with su-perior electro-mechanical properties are emerging ...
Nano-materials are currently gaining a lot of prominence due to their unique properties and applicat...
A mobile three-terminal electromechanical platform is newly developed to characterize multi-properti...
As the characteristic dimensions of electronic devices continue to shrink, the ability to characteri...
Progress in modem science is impossible without reliable tools for characterization of structural, p...
Everyday devices ranging from computers and cell phones to the LEDs inside traffic lights exploit qu...
Modern methods of in situ transmission electron microscopy (TEM) allow one to not only manipulate wi...
The main goal of this thesis has been to apply in-situ Transmission Electron Microscopy (TEM) electr...
There is a wide array of technologically significant materials whose response to electric and magnet...
Functional nanomaterials possess exceptional mechanical, electrical, and optical properties which ha...
In the past decades, in situ scanning electron microscopy (SEM) has become a powerful technique for ...
The unique properties of nanomaterials have made them potential candidates in energy applications. D...
The great effort is being placed in the design of new characterization techniques and the constructi...
The scanning electron microscope (SEM) can be used to study and characterize a wide variety of mater...
The relationship between property and structure is one of the most important fundamental questions i...
Abstract New materials and nanostructures with su-perior electro-mechanical properties are emerging ...
Nano-materials are currently gaining a lot of prominence due to their unique properties and applicat...
A mobile three-terminal electromechanical platform is newly developed to characterize multi-properti...
As the characteristic dimensions of electronic devices continue to shrink, the ability to characteri...
Progress in modem science is impossible without reliable tools for characterization of structural, p...
Everyday devices ranging from computers and cell phones to the LEDs inside traffic lights exploit qu...
Modern methods of in situ transmission electron microscopy (TEM) allow one to not only manipulate wi...
The main goal of this thesis has been to apply in-situ Transmission Electron Microscopy (TEM) electr...
There is a wide array of technologically significant materials whose response to electric and magnet...