Published March 16, 2022 | Version v1

2D materials for future heterogeneous electronics

  • 1. AMO GmbH
  • 2. University of Texas - Austin
  • 3. IMEC
  • 4. RWTH Aachen University

Description

Graphene and two-dimensional materials (2DM) remain an active field of research in science and engineering over 15 years after the first reports of 2DM. The vast amount of available data and the high performance of device demonstrators leave little doubt about the potential of 2DM for applications in electronics, photonics and sensing. So where are the integrated chips and enabled products? We try to answer this by summarizing the main challenges and opportunities that have thus far prevented 2DM applications.

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Additional details

Funding

European Commission
QUEFORMAL - Quantum Engineering for Machine Learning 829035
European Commission
MISEL - MULTISPECTRAL INTELLIGENT VISION SYSTEM WITH EMBEDDED LOW-POWER NEURAL COMPUTING 101016734
European Commission
GreEnergy - Wideband optical antennae for use in energy harvesting applications - GreEnergy 101006963
European Commission
ULTRAPHO - Ultra-fast Graphene Photodetectors 971398
European Commission
INTEGRADE - Integrating Graphene Devices 307311
European Commission
ULISSES - Ultra low-power integrated optical sensor systems for networked environmental multichannel gas Sensing 825272
European Commission
2D4QT - 2D Materials for Quantum Technology 820254
European Commission
2D-EPL - Graphene Flagship 2D Experimental Pilot Line 952792
European Commission
AEOLUS - An Affordable, miniaturisEd, clOud-connected system powered by deep Learning algorithms for comprehensive air qUality measurements based on highly integrated mid-IR photonic 101017186
European Commission
GrapheneCore3 - Graphene Flagship Core Project 3 881603
European Commission
2Exciting - Developing optoelectronics in two-dimensional semiconductors 956813
European Commission
WiPLASH - Architecting More Than Moore – Wireless Plasticity for Heterogeneous Massive Computer Architectures 863337