As technology, materials, and business models are restructured continuously to meet evolving market demand, the electronics industry is also becoming extremely competitive.
Fremont, CA: Innovation in the electronics sector is encouraged by the need for miniaturized, enhanced networking and processing capacity, higher data rates, and most importantly, sustainability.
As customers discard goods with a shorter shelf life, longevity or reliability is a significant concern in the electronics industry, raising electronic waste. Manufacturers are now focused on creating advanced materials to enhance the efficiency and life of electronic devices to solve these problems.
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Advanced materials refer to new material or an existing material being altered. These materials have superior characteristics that can exceed conventional materials. In the electrical industry, there are three specialized materials:
Silicon carbide (SiC)
Silicon carbide (SiC) is an extremely strong substance found under the crust of the earth. Because of its hardness, SiC is used as an abrasive material for diverse industrial applications. It can be synthetically produced under high temperature and pressure conditions by mixing petroleum coke and sand/silica.adv
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SiC has diverse applications; it is used as a composite armor structural material, bulletproof vest armor plates, electrical circuit, solar inverter, and battery charger; it has been used for the last few decades in the electronics and semiconductor industries on a wide scale.
Quantum dots (QDs)
Tiny particles of a semiconductor material that were discovered in 1980 are known as quantum dots (QDs). The electronic properties of bulk semiconductors and individual molecules are unique; they can also emit different colors depending on the particle's size. QDs are expected to revolutionize low-cost and extremely energy-saving TVs and electronic displays. They are built into show films; they get energy from a light source and emit deep reds and bright greens in a color palette.
Graphene
Graphene is a 200 times stronger two-dimensional carbon allotrope than steel, flexible, extremely thin, ultra-light, and an excellent heat and light conductor. It is prepared by different production methods, with the most favored processes being exfoliation and chemical vapor deposition (CVD).
While graphene is a new technology and has a limited share in the advanced materials market worldwide, its specific properties make graphene a useful replacement for incumbent materials, including electronics, composites, energy storage, coatings, sensors, and catalysts, in various industrial applications.
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