Majority Carriers

Majority carriers are the charge carriers present in the greatest concentration within a semiconductor, and they largely determine how the material conducts electricity. In an n-type semiconductor, donor impurities supply electrons as majority carriers, whereas acceptor impurities create holes as the majority carriers in a p-type semiconductor; under an applied electric field, these carriers drift and produce current. Understanding majority carriers is fundamental to engineering semiconductor materials and devices, including diodes, transistors, and sensors, because carrier concentration influences conductivity, junction behavior, switching, and response to temperature or external bias.

Majority Carriers - Related Videos

Education

JoVE Core - Biology

Electron Carriers

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2019

Electron carriers can be thought of as electron shuttles. These compounds can easily accept electrons (i.e., be reduced) or lose them (i.e., be oxidized). They play an essential role in energy production because cellular respiration is contingent on the flow of electrons. Over the many stages of cellular respiration, glucose breaks down into carbon dioxide and water. Electron carriers pick up electrons lost by glucose in these reactions, temporarily storing and releasing them into the electron...

Research

JoVE Journal - Biology

Major Components of the Light Microscope

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2008

The light microscope is a basic tool for the cell biologist, who should have a thorough understanding of how it works, how it should be aligned for different applications, and how it should be maintained as required to obtain maximum image-forming capacity and resolution. The components of the microscope are described in detail here.

Carrier Transport

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2024

The generation of electrical current in semiconductors is fundamentally driven by two mechanisms: drift and diffusion. These processes are essential for the functionality and performance of semiconductor-based devices. Drift Current: The drift of charge carriers is started by an external electric field (E). Charged particles, such as electrons and holes, experience an acceleration between collisions with lattice atoms. For electrons, this results in a drift velocity (vd) given by: Where μe is...

Biodistribution of Nano-drug Carriers: Applications of SEM

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2023

Source: Peiman Shahbeigi-Roodposhti and Sina Shahbazmohamadi, Biomedical Engineering Department, University of Connecticut, Storrs, Connecticut Nanoparticles have been increasingly used research towards targeted drug delivery and controlled drug release. While most of these particles have been developed as polymeric or liposomal particles because of their biocompatibility, there is a trend in current research toward the use of metallic and magnetic nanoparticles. These metallic nanoparticles...

Encapsulation of Cancer Therapeutic Agent Dacarbazine Using Nanostructured Lipid Carrier

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Cited by 8 •

2016

The most commonly used method for nanostructured lipid carrier (NLC) synthesis involves oil-in-water emulsion, homogenization and solidification. This was modified here by applying high shear dispersion after solidification to achieve a NLC with desirable size, improved drug encapsulation and drug loading efficiency as a potential carrier for dacarbazine delivery.

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