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High Pressure Transmission Electron Microscopy (TEM)
Transmission electron microscopy uses an electron beam to reveal the structural information of a sample. To this end, the instrument needs to be in a... -
Introduction to In-Situ Transmission Electron Microscopy
The capability to capture the evolution of the structure and properties of nanomaterials in response to external stimuli makes in situ transmission... -
In-Situ Transmission Electron Microscopy
This book focuses on in-situ transmission electron microscopy (TEM), an investigatory technique used to observe a sample’s response to a given...
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Electron Microscopy
The chapter presents the fundaments of electron and optical microscopes. It begins with an overview of microscopy and then continues to how the... -
Machine learning for automated experimentation in scanning transmission electron microscopy
Machine learning (ML) has become critical for post-acquisition data analysis in (scanning) transmission electron microscopy, (S)TEM, imaging and...
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In-Situ Gas Transmission Electron Microscopy
One of the most nonnegligible characters of a Transmission Electron Microscope (TEM) is that the interior chamber which contains an electron source,... -
Accurate atomic scanning transmission electron microscopy analysis enabled by deep learning
Currently, the machine learning (ML)-based scanning transmission electron microscopy (STEM) analysis is limited in the simulative stage, its...
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Characterisation of Secondary Copper Smelting Slag With Transmission Electron Microscopy
The utilization of slag from metallurgical processes supports resource conservation, which highlights the importance of understanding its properties....
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Gas-phase materials synthesis in environmental transmission electron microscopy
Gas-phase transmission electron microscopy is an essential tool for elucidating the mechanisms involved in the synthesis of functional materials....
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Probing the Nucleation and Growth Kinetics of Bismuth Nanoparticles via In-situ Transmission Electron Microscopy
The nucleation and growth mechanism of nanoparticles is an important theory, which can guide the preparation of nanomaterials. However, it is still...
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Quantitative gas-phase transmission electron microscopy: Where are we now and what comes next?
Based on historical developments and the current state of the art in gas-phase transmission electron microscopy (GP-TEM), we provide a perspective...
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Characterization of local chemical ordering and deformation behavior in high entropy alloys by transmission electron microscopy
Short-range ordering (SRO) is one of the most important structural features of high entropy alloys (HEAs). However, the chemical and structural...
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Leveraging generative adversarial networks to create realistic scanning transmission electron microscopy images
The rise of automation and machine learning (ML) in electron microscopy has the potential to revolutionize materials research through autonomous data...
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Correlating the fluctuated growth of carbon nanotubes with catalyst evolution by atmospheric-pressure environmental transmission electron microscopy
Rate-controlled growth of carbon nanotubes (CNTs) and catalyst design are considered efficient ways for the preparation of CNTs with specific...
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Recent advances in liquid phase transmission electron microscopy of nanoparticle growth and self-assembly
Over the last several decades, colloidal nanoparticles have evolved into a prominent class of building blocks for materials design. Important...
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Transmission Electron Microscopy
In this chapter, we will explore the contrast arising from various features of a specimen using the kinematical theory of diffraction contrast, and... -
Electron Microscopy for Visualization of Interfaces in Adhesion and Adhesive Bonding
This chapter provides an overview of electron microscopy techniques to investigate interfaces in polymeric materials and adhesive bonds. First, how... -
Microscopy Analysis
In the study of mineral raw materials, three main types of microscopy are used: optical microscopy (OM), scanning electron microscopy (SEM) and... -
A Stepped Mesh Host for Lithium Metal Batteries Inspired by Transmission Electron Microscopy Sampling Grids
With the growing demand for high-energy-density rechargeable batteries, lithium metal anodes have reemerged as a promising alternative to...
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Transmission-scanning electron microscopy of interface fracture of ferrite deformation twins
Deformation twins in the ferrite matrix of an age-hardened duplex stainless steel have been observed using on-axis transmission Kikuchi diffraction...