Defect Engineering

Defect engineering is the deliberate design and control of imperfections in a material’s crystal lattice or molecular structure to tune its chemical and physical properties. In chemistry, researchers introduce or modify vacancies, substitutions, interstitial atoms, dislocations, or surface defects by adjusting composition, synthesis conditions, temperature, and atmosphere. These defects alter electronic structure, charge distribution, coordination environments, ion transport, and adsorption behavior, often creating active sites or changing reaction pathways. Defect engineering supports the development of catalysts, sensors, batteries, photocatalysts, and functional nanomaterials, enabling improved activity, selectivity, conductivity, stability, and performance through precise control of material structure.

Defect Engineering - Related Videos

Research

JoVE Journal - Bioengineering

Engineered Vascularized Muscle Flap

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Cited by 6 •

2016

To date, thick tissue defects are typically reconstructed by applying autologous tissue flaps or engineered tissues. In this protocol, we present a new method for engineering vascularized tissue flap bearing an autologous pedicle, to serve as a substitute to autologous flaps.

A Full Skin Defect Model to Evaluate Vascularization of Biomaterials In Vivo

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Cited by 13 •

2014

Vascularization is key to approaches in successful tissue engineering. Therefore, reliable technologies are required to evaluate the development of vascular networks in tissue-constructs. Here we present a simple and cost-effective method to visualize and quantify vascularization in vivo.

A Novel Tenorrhaphy Suture Technique with Tissue Engineered Collagen Graft to Repair Large Tendon Defects

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Cited by 1 •

2021

In this paper, we present an in vitro and in situ protocol to repair a tendon gap of up to 1.5 cm by filling it with engineered collagen graft. This was performed by developing a modified suture technique to take the mechanical load until the graft matures into the host tissue.

ECM Protein Nanofibers and Nanostructures Engineered Using Surface-initiated Assembly

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Cited by 17 •

2014

A method to obtain nanofibers and complex nanostructures from single or multiple extracellular matrix proteins is described. This method uses protein-surface interactions to create free-standing protein-based materials with tunable composition and architecture for use in a variety of tissue engineering and biotechnology applications.

Education

JoVE Core - Civil Engineering

Lumber Defects

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2024

Lumber defects, which can affect both the appearance and structural integrity of wood, include a variety of growth and manufacturing flaws. Growth defects such as knots and knotholes occur where branches were once attached to the tree trunk, with knotholes forming when these knots fall out. Other natural defects include decay and insect damage, which compromise the wood's strength and durability. Shakes are minor fractures that run along or across the wood's annual rings, while wane is...

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