3D Integration of 2D Field-Effect Transistors
The number of transistors on a chip will double every two years, according to Moore’s Law, a key scaling concept for electronic devices, guaranteeing increasing processing power—but there is a limit.
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The number of transistors on a chip will double every two years, according to Moore’s Law, a key scaling concept for electronic devices, guaranteeing increasing processing power—but there is a limit.
Today's most advanced chips house nearly 50 billion transistors within a space no larger than your thumbnail. The task of cramming even more transistors into th
Today's most advanced chips house nearly 50 billion transistors within a space no larger than your thumbnail. The task of cramming even more transistors into th
<p>In a study published today (Jan. 10) in the journal <a href="https://www.nature.com/articles/s41586-023-06860-5">Nature</a>, Saptarshi Das, an associate professor of engineering science and mechanics and co-corresponding author of the study, and his team suggest a way to fit more transistors on a chip by seamlessly implementing 3D integration with 2D materials.</p>
Crystal growth lab renews funding from NSF The PARADIM Bulk Crystal Growth Facility helps scientists from around the world discover, develop, and manufacture advanced materials never before seen in science By Rachel Wallach / Published May 28, 2021 Johns Hopkins' groundbreaking bulk crystal growth facility, part of one of four materials innovation platforms supported by the National Science Foundation, has received a $5 million renewal grant that will allow scientists to continue designing and creating new materials there for the next generation of el...