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beyond traditional CMOS devices. 2D materials, renowned for their distinctive properties at the nanoscale, provide new research paths and implementation for nanoelectronics. Oscillatory Neural Networks
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reduction, signal turnover, etc. This task will be carried out within a consortium which is vertically integrated and has expertise in cellular biology, surface chemistry, nanoelectronics fabrication
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performance is pivotal for advancing beyond traditional CMOS devices. 2D materials, renowned for their distinctive properties at the nanoscale, provide new research paths and implementation for nanoelectronics
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which is vertically integrated and has expertise in cellular biology, surface chemistry, nanoelectronics fabrication, hardware integration, regulatory and industrial sampling, and artificial intelligence
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, are emerging. Alongside these digital solutions, there's a burgeoning interest in exploring analog, hybrid, and advanced nanoelectronic devices, with a keen focus on those boasting memristive attributes. In