Misfit Dislocations

Misfit dislocations are line defects that form at the interface between two crystalline materials with different lattice spacings, helping accommodate lattice mismatch in engineered structures. During epitaxial growth, a thin film initially deforms elastically to remain aligned with its substrate; beyond a critical thickness, forming interfacial dislocations can relieve the resulting misfit strain. Their density, arrangement, and motion influence residual stress, crystal quality, and the electrical or mechanical performance of heterostructures. Understanding misfit dislocations supports the design of semiconductor devices, optoelectronic materials, protective coatings, and other thin-film systems where interface structure controls functionality.

Misfit Dislocations - Related Videos

Education

JoVE Science Education - Clinical Skills

Intra-articular Shoulder Injection for Reduction Following Shoulder Dislocation

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2023

Source: Rachel Liu, BAO, MBBCh, Emergency Medicine, Yale School of Medicine, New Haven, Connecticut, USA The anterior shoulder dislocation is one of the most common joint dislocations seen in emergency settings. In anterior shoulder dislocation, the humeral head is displaced out of the glenohumeral joint in front of the scapular glenoid, resulting in a loss of the articulation between the arm and the rest of the shoulder. This can be caused by a fall onto an abducted, extended, and externally...

Research

JoVE Journal - Engineering

Theoretical Calculation and Experimental Verification for Dislocation Reduction in Germanium Epitaxial Layers with Semicylindrical Voids on Silicon

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2020

Theoretical calculation and experimental verification are proposed for a reduction of threading dislocation (TD) density in germanium epitaxial layers with semicylindrical voids on silicon. Calculations based on the interaction of TDs and surface via image force, TD measurements, and transmission electron microscope observations of TDs are presented.

Electron Channeling Contrast Imaging for Rapid III-V Heteroepitaxial Characterization

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Cited by 22 •

2015

The use of electron channeling contrast imaging in a scanning electron microscope to characterize defects in III-V/Si heteroexpitaxial thin films is described. This method yields similar results to plan-view transmission electron microscopy, but in significantly less time due to lack of required sample preparation.

Research

JoVE Journal - Engineering
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A Novel Method for In Situ Electromechanical Characterization of Nanoscale Specimens

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Cited by 2 •

2017

Isolating electrical and thermal effects on electrically assisted deformation (EAD) is very difficult using macroscopic samples. Metallic sample micro- and nanostructures together with a custom test procedure have been developed to evaluate the impact of applied current on the formation without joule heating and evolution of dislocations on these samples.

Analysis of Thermal Expansion via Dilatometry

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2023

Source: J. Jacob Chavez, Ryan T. Davis, and Taylor D. Sparks, Department of Materials Science and Engineering, The University of Utah, Salt Lake City, UT Thermal expansion is extremely important when considering which materials will be used in systems that experience fluctuations in temperature. A high or low thermal expansion in a material may or may not be desirable, depending on the application. For instance, in a common liquid thermometer, a material with a high thermal expansion would be...

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