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SUMMARY:IEM Seminar Series: The Chip Act match: Germany - USA and future t
 rends in nanoelectronics - 2D Materials for Future Microelectronics
DTSTART:20230907T140000
DTSTAMP:20260916T230208Z
UID:24bdae44c3d50856e6ee221f065207b17596bfdb3f6da710fbc303cf
CATEGORIES:Conferences - Seminars
DESCRIPTION:Prof Max Lemme\, RWTH Aachen University\, Chair of Electronic 
 Devices\, Germany\nAbstract\nThe talk will start with an overview of recen
 tly initiated large-scale initiatives in Germany linked to reconsidering t
 he strategic importance of semiconductor manufacturing in Europe. I will t
 hen discuss how 2D materials could make a difference in various fields of 
 future microelectronics\, such as a continuation of “device scaling” (
 i.e. Moore’s Law)\, adding functionality with sensing\, photonics\, or f
 uture electronics enabled by neuromorphic and quantum computing [1]. Sever
 al specific examples will be shown based on recent experiments in photonic
 s [2]–[5] and on neuromorphic devices [6]–[8]. Nevertheless\, there ar
 e several key bottlenecks toward manufacturing of 2D materials. These will
  be discussed in the context of the work carried out within the European 2
 D Material Experimental Pilot Line (2D-EPL).\n\nThis work has received fun
 ding from the European Union's Horizon 2020 research and innovation progra
 mme under grant agreements 952792 (2D-EPL) and 881603 (Graphene Flagship C
 ore 3)\, and the German Ministry of Education and Research (BMBF) under gr
 ant agreements 16ES1121 (NobleNEMS)\, 03ZU1106AA (NeuroSys) and 16ME0399/1
 6ME0400 (NEUROTEC II).\n\n[1]           M. C. Lemme\, D. Akinwan
 de\, C. Huyghebaert\, and C. Stampfer\, “2D materials for future heterog
 eneous electronics\,” Nat. Commun.\, vol. 13\, no. 1\, Art. no. 1\, Mar.
  2022\, doi: 10.1038/s41467-022-29001-4.\n[2]           S. Parhi
 zkar et al.\, “Two-Dimensional Platinum Diselenide Waveguide-Integrated 
 Infrared Photodetectors\,” ACS Photonics\, vol. 9\, no. 3\, pp. 859–86
 7\, Mar. 2022\, doi: 10.1021/acsphotonics.1c01517.\n[3]         
   N. Negm et al.\, “Graphene waveguide-integrated thermal infrared emit
 ter\,” presented at the 2022 Device Research Conference (DRC)\, Columbus
 \, Ohio\, USA\, Jun. 2022\, pp. 1–2. doi: 10.1109/DRC55272.2022.9855779.
 \n[4]           N. Negm et al.\, “Graphene thermal infrared em
 itters integrated into silicon photonic waveguides.” arXiv\, Aug. 08\, 2
 023. doi: 10.48550/arXiv.2308.04046.\n[5]           M. Prechtl e
 t al.\, “Conformal and selective deposition of layered PtSe2: 2D goes 3D
 \,” Adv. Funct. Mater.\, p. 2103936\, 2021.\n[6]           M. 
 Belete et al.\, “Nonvolatile Resistive Switching in Nanocrystalline Moly
 bdenum Disulfide with Ion-Based Plasticity\,” Adv. Electron. Mater.\, p.
  1900892\, 2020\, doi: 10.1002/aelm.201900892.\n[7]           L.
  Völkel et al.\, “Resistive Switching and Current Conduction Mechanisms
  in Hexagonal Boron Nitride Threshold Memristors with Nickel Electrodes\,
 ” Adv. Funct. Mater.\, p. 2300428\, doi: 10.1002/adfm.202300428.\n[8] 
           D. Braun et al.\, “Non-Volatile Resistive Switching i
 n PtSe2-Based Crosspoint Memristors\,” presented at the Device Research 
 Conference (DRC)\, Columbus\, Ohio\, USA\, Jun. 2022.\n\n\n\nBio\nMax Chri
 stian Lemme is a professor at RWTH Aachen University and Scientific Direct
 or of AMO GmbH in Aachen\, Germany\, since 2017. He received his Ph.D. deg
 ree in Electrical Engineering from RWTH in 2004. He joined Harvard Univers
 ity from 2008-2010 with a Feodor Lynen Fellowship from the Alexander von H
 umboldt-Foundation to work on graphene devices and technology. He became G
 uest Professor at KTH Royal Institute of Technology\, Sweden in 2010\, and
  a DFG Heisenberg Professor at the University of Siegen in 2012. He receiv
 ed the “NanoFutur” award from the German BMBF in 2006 and an ERC Start
 ing Grant in 2012. His research includes electronic\, optoelectronic\, and
  nanoelectromechanical devices based on new materials like graphene\, rela
 ted 2 D materials and perovskites. Recently\, he has investigated new devi
 ce concepts for neuromorphic computing.
LOCATION:ELA 1 https://plan.epfl.ch/?room==ELA%201
STATUS:CONFIRMED
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