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This chapter discusses the possibilities and advantages offered by the use of diamond materials in the fabrication of microfluidic devices.
This research demonstrated that diamond materials could be suitable as implants as well as to locally repair them.
The different applications of diamond materials in this field are reviewed, along with a discussion of recent development and future trends.
This study further demonstrates the potential of 3D designs for increasing the resolution of retinal implants and validates the safety of diamond materials for retinal implants and neuroprostheses in general.
Field effect transistors (FETs) in diamond should outperform FET structures on other wide bandgap materials like SiC and GaN in high power/high temperature applications due to the ideal diamond materials properties.
A growing interest in diamond materials has been shown in the recent year for the design of smart chemical and biochemical sensors due to the remarkable physical and chemical properties of diamond.
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Continuous Position Sensitive Diamond Detector (CPSDD) development started by using the single crystal (sc) diamond material.
This limitation was overcome by Stratapax, a sintered diamond material developed by the General Electric Company of the United States.
A proposal to build a fully scalable quantum computer based on diamond material will be discussed.
Reinforced Plastics reports on a new synthetic diamond material designed for aerospace tooling.
The intensity of the plasma means the company can create pure diamond material at about 150 times the rate at which the industry now produces it.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com