Inventing disruptive technologies for nanoelectronic devices and creating new paradigms for life-machine symbiosis

Biswajit Sarkar with images from stock.adobe.com by SciePro & Edelweiss

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Field-free deterministic switching of all–van der Waals spin-orbit torque system above room temperature

Shivam N. Kajale et al., Field-free deterministic switching of all–van der Waals spin-orbit torque system above room temperature. Sci. Adv. 10, eadk8669(2024). DOI:10.1126/sciadv.adk8669

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Current-induced switching of a van der Waals ferromagnet at room temperature

Kajale, S.N., Nguyen, T., Chao, C.A. et al. Current-induced switching of a van der Waals ferromagnet at room temperature. Nat Commun 15, 1485 (2024). https://doi.org/10.1038/s41467-024-45586-4

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Two-dimensional magnetic materials for spintronic applications

Kajale, S.N., Hanna, J., Jang, K. et al. Two-dimensional magnetic materials for spintronic applications. Nano Res. (2024). https://doi.org/10.1007/s12274-024-6447-2

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Cell Rover: An Intracellular Antenna for Radio Communication in 3D Biological Systems

B. Joy and D. Sarkar, "Cell Rover: An Intracellular Antenna for Radio Communication in 3D Biological Systems," 2023 IEEE International Symposium on Antennas and Propagation and USNC-URSI Radio Science Meeting (USNC-URSI), Portland, OR, USA, 2023, pp. 1381-1382, doi: 10.1109/USNC-URSI52151.2023.10237858.

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Abstract: JJ03.00008 : An Intracellular Antenna For Wireless Probing And Augmentation Of Living Cells*

Baju Joy. "Abstract: JJ03.00008 : An Intracellular Antenna For Wireless Probing And Augmentation Of Living Cells." APS March Meeting 2023, Volume 68, Number 3, Session JJ03: V: Emergent Properties of Complex Oxides Bulk, Thin Films, and Heterostructures V.

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Study of vdW Magnetic Materials for Spintronic Applications

Kajale, Shivam. Study of vdW Magnetic Materials for Spintronic Applications. 2023. MIT, MS Thesis

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From Green Electronics to Gray Matter and Cyborg Cells

D. Sarkar, "From Green Electronics to Gray Matter and Cyborg Cells," in IEEE Nanotechnology Magazine, vol. 17, no. 1, pp. 22-25, Febraury 2023, doi: 10.1109/MNANO.2022.3228095.

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Biohybrid Robots: Recent progress, challenges, and perspectives

Victoria A. Webster-Wood, Maria Guix, Nicole W. Xu, Bahareh Behkam, Hirotaka Sato, Deblina Sarkar, Samuel Sánchez, Masahiro Shimizu and Kevin Kit Parker Accepted Manuscript online 20 October 2022 • © 2022 The Author(s). Published by IOP Publishing Ltd.

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Cell Rover—a miniaturized magnetostrictive antenna for wireless operation inside living cells

Joy, B., Cai, Y., Bono, D.C. et al. Cell Rover—a miniaturized magnetostrictive antenna for wireless operation inside living cells. Nature Communications 13, 5210 (2022). https://doi.org/10.1038/s41467-022-32862-4

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Revealing nanostructures in brain tissue via protein decrowding by iterative expansion microscopy

Sarkar, D., Kang, J., Wassie, A.T. et al. Revealing nanostructures in brain tissue via protein decrowding by iterative expansion microscopy. Nat. Biomed. Eng (2022). https://doi.org/10.1038/s41551-022-00912-3

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Expansion Revealing: Decrowding Proteins to Unmask Invisible Brain Nanostructures

Deblina Sarkar, Jinyoung Kang, Asmamaw T Wassie, Margaret E. Schroeder, Zhuyu Peng, Tyler B. Tarr, Ai-Hui Tang, Emily Niederst, Jennie Z. Young, Li-Huei Tsai, Thomas A. Blanpied, Edward S. Boyden in press Nature Biomedical Engineering, 2022

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2D material-based field-effect-transistors and nano-electro-mechanical systems for sensing applications

S. Kajale*, S. Yadav*, Y. Cai, B. C. Joy, D. Sarkar (* co 1st authors), iScience (2021): 103513

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Inhibition of LRRK2 kinase activity promotes anterograde axonal transport and presynaptic targeting of α-synuclein

Brzozowski, C.F., Hijaz, B.A., Singh, V. , Nolwazi Z. Gcwensa, Kaela Kelly, Edward S. Boyden, Andrew B. West, Deblina Sarkar & Laura A. Volpicelli-Daley. Inhibition of LRRK2 kinase activity promotes anterograde axonal transport and presynaptic targeting of α-synuclein. acta neuropathol commun 9, 180 (2021). https://doi.org/10.1186/s40478-021-01283-7

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NEMS Sensors Based on Novel Nanomaterials

Yadav S., Tripathy S., Sarkar D. (2022) NEMS Sensors Based on Novel Nanomaterials. In: Yang Z. (eds) Advanced MEMS/NEMS Fabrication and Sensors. Springer, Cham. https://doi.org/10.1007/978-3-030-79749-2_6

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Iterative direct expansion microscopy

D. Sarkar, E. S. Boyden, A. T. Wassie, J. Kang US Patent App. 16/794,849, 2020

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2D Materials for Field-Effect Transistor–Based Biosensors

Sarkar, Deblina. "2D Materials for Field-Effect Transistor–Based Biosensors." Fundamentals and Sensing Applications of 2D Materials, ed. by Morgan Hywel, Chandra Sekhar Rout and Dattatray J. Late. Woodhead Publishing Series in Electronic and Optical Materials 2019, Pages 329-377

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Iterative Direct Expansion Microscopy

D. SARKAR, A. WASSIE, J. KANG, T. TARR, A. TANG, T. A. BLANPIED, E. S. BOYDEN. "Iterative Direct Expansion Micrography." Neuroscience 2019, 1550-1551.

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Glyoxal as an alternative fixative to formaldehyde in immunostaining and super‐resolution microscopy

Katharina N Richter, et al. "Glyoxal as an alternative fixative to formaldehyde in immunostaining and super‐resolution microscopy." The European Molecular Biology Organization Journal (2018)37:139-159.

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100-fold linear expansion of biological samples for nanoscale imaging

D. SARKAR, A. T. WASSIE, A. PAYNE, K. D. PIATKEVICH, D. ORAN, J.-B. CHANG, E. S. BOYDEN. Society for Neuroscience, 2016.

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2D Semiconductor FETs—Projections and Design for Sub-10 nm VLSI

W. Cao, J. Kang, D. Sarkar, W. Liu and K. Banerjee, "2D Semiconductor FETs—Projections and Design for Sub-10 nm VLSI," in IEEE Transactions on Electron Devices, vol. 62, no. 11, pp. 3459-3469, Nov. 2015.

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Functionalization of transition metal dichalcogenides with metallic nanoparticles: Implications for doping and gas-sensing

D. Sarkar, X. Xie, J. Kang, H. Zhang, W. Liu, J. Navarrete, M. Moskovits and K. Banerjee, “ Functionalization of Transition Metal Dichalcogenides with Metallic Nanoparticles: Implications for Doping and Gas-Sensing,” Nano Lett., Vol. 15, No. 5, pp. 2852, 2015.

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A subthermionic tunnel field-effect transistor with an atomically thin channel

D. Sarkar, X. Xie, W. Liu, W. Cao, J. Kang, Y. Gong, S. Kraemer, P. M. Ajayan and K. Banerjee, “A subthermionic tunnel field-effect transistor with an atomically thin channel,” Nature, Vol. 526, No. 7571, pp. 91, 2015

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Designing band-to-band tunneling field-effect transistors with 2D semiconductors for next-generation low-power VLSI

W. Cao, J. Jiang, J. Kang, D. Sarkar, W. Liu and K. Banerjee, "Designing band-to-band tunneling field-effect transistors with 2D semiconductors for next-generation low-power VLSI," 2015 IEEE International Electron Devices Meeting (IEDM), Washington, DC, 2015, pp. 12.3.1-12.3.4. doi: 10.1109/IEDM.2015.7409682

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Impact of Contact on the Operation and Performance of Back-Gated Monolayer MoS2 Field-Effect-Transistors

Impact of Contact on the Operation and Performance of Back-Gated Monolayer MoS2 Field-Effect-Transistors Wei Liu, Deblina Sarkar, Jiahao Kang, Wei Cao, and Kaustav Banerjee ACS Nano 2015 9 (8), 7904-7912 DOI: 10.1021/nn506512j

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Graphene inductors for high-frequency applications - design, fabrication, characterization, and study of skin effect

D. Sarkar et al., "Graphene inductors for high-frequency applications - design, fabrication, characterization, and study of skin effect," 2014 IEEE International Electron Devices Meeting, San Francisco, CA, 2014, pp. 5.4.1-5.4.4.

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Performance evaluation and design considerations of 2D semiconductor based FETs for sub-10 nm VLSI

W. Cao, J. Kang, D. Sarkar, W. Liu and K. Banerjee, "Performance evaluation and design considerations of 2D semiconductor based FETs for sub-10 nm VLSI," 2014 IEEE International Electron Devices Meeting, San Francisco, CA, 2014, pp. 30.5.1-30.5.4.

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Computational Study of Metal Contacts to Monolayer Transition-Metal Dichalcogenide Semiconductors

Jiahao Kang, Wei Liu, Deblina Sarkar, Debdeep Jena, and Kaustav Banerjee Phys. Rev. X 4, 031005 – Published 14 July 2014

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Subthreshold-swing physics of tunnel field-effect transistors

D. Sarkar et al, AIP Advances 4, 067141 (2014)

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Graphene and beyond-graphene 2D crystals for next-generation green electronics

Jiahao Kang; Wei Cao; Xuejun Xie; Deblina Sarkar; Wei Liu; Kaustav Banerjee. Proceedings Volume 9083, Micro- and Nanotechnology Sensors, Systems, and Applications VI; 908305 (2014)

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Low-Frequency Noise in Bilayer MoS2 Transistor

D. Sarkar et al. ACS Nano 2014, 8, 6, 5633-5640

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MoS2 Field-Effect Transistor for Next-Generation Label-Free Biosensors

Deblina Sarkar, Wei Liu, Xuejun Xie, Aaron C. Anselmo, Samir Mitragotri, Kaustav Banerjee. ACS Nano 2014, 8, 4, 3992-4003

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High-performance few-layer-MoS2 field-effect-transistor with record low contact-resistance

Wei Liu ; Jiahao Kang ; Wei Cao ; Deblina Sarkar ; Yasin Khatami ; Debdeep Jena ; Kaustav Banerjee, "High-performance few-layer-MoS2 field-effect-transistor with record low contact-resistance," 2013 IEEE International Electron Devices Meeting, Washington, DC, 2013, pp. 19.4.1-19.4.4.

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Controllable and Rapid Synthesis of High-Quality and Large-Area Bernal Stacked Bilayer Graphene Using Chemical Vapor Deposition

Wei Liu, Stephan Kraemer, Deblina Sarkar, Hong Li, Pulickel M. Ajayan, Kaustav Banerjee. Chem. Mater. 2014, 26, 2, 907-915

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2-Dimensional tunnel devices and circuits on graphene: Opportunities and challenges

J. Kang, W. Cao, D. Sarkar, Y. Khatami, W. Liu and K. Banerjee, "2-Dimensional tunnel devices and circuits on graphene: Opportunities and challenges," 2013 Third Berkeley Symposium on Energy Efficient Electronic Systems (E3S), Berkeley, CA, 2013, pp. 1-2.

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2D electronics: Graphene and beyond

W. Cao, J. Kang, W. Liu, Y. Khatami, D. Sarkar and K. Banerjee, "2D electronics: Graphene and beyond," 2013 Proceedings of the European Solid-State Device Research Conference (ESSDERC), Bucharest, 2013, pp. 37-44.

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Proposal for all-graphene monolithic logic circuits

Jiahao Kang, Deblina Sarkar, Yasin Khatami, and Kaustav Banerjee. Appl. Phys. Lett. 103, 083113 (2013)

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Impact-ionization field-effect-transistor based biosensors for ultra-sensitive detection of biomolecules

Deblina Sarkar, Harald Gossner, Walter Hansch, and Kaustav Banerjee

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Role of Metal Contacts in Designing High-Performance Monolayer n-Type WSe2 Field Effect Transistors

Wei Liu, Jiahao Kang, Deblina Sarkar, Yasin Khatami, Debdeep Jena, Kaustav Banerjee. Nano Lett. 2013, 13, 5, 1983-1990

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Tunnel-field-effect-transistor based gas-sensor: Introducing gas detection with a quantum-mechanical transducer

Deblina Sarkar, Harald Gossner, Walter Hansch, and Kaustav Banerjee. Appl. Phys. Lett. 102, 023110 (2013)

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A computational study of metal-contacts to beyond-graphene 2D semiconductor materials

J. Kang, D. Sarkar, W. Liu, D. Jena and K. Banerjee, "A computational study of metal-contacts to beyond-graphene 2D semiconductor materials," 2012 International Electron Devices Meeting, San Francisco, CA, 2012, pp. 17.4.1-17.4.4.

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Fundamental limitations of conventional-FET biosensors: Quantum-mechanical-tunneling to the rescue

D. Sarkar and K. Banerjee, "Fundamental limitations of conventional-FET biosensors: Quantum-mechanical-tunneling to the rescue," 70th Device Research Conference, University Park, PA, USA, 2012, pp. 83-84.

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Proposal for tunnel-field-effect-transistor as ultra-sensitive and label-free biosensors

Deblina Sarkar and Kaustav Banerjee. Appl. Phys. Lett. 100, 143108 (2012)

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Metallic-nanoparticle assisted enhanced band-to-band tunneling current

Deblina Sarkar and Kaustav Banerjee, Appl. Phys. Lett. 99, 133116 (2011)

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Vertically Stacked and Independently Controlled Twin-Gate MOSFETs on a Single Si Nanowire

Xiang Li ; Zhixian Chen ; Nansheng Shen ; Deblina Sarkar ; Navab Singh ; Kaustav Banerjee, "Vertically Stacked and Independently Controlled Twin-Gate MOSFETs on a Single Si Nanowire," in IEEE Electron Device Letters, vol. 32, no. 11, pp. 1492-1494, Nov. 2011.

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High-Frequency Behavior of Graphene-Based Interconnects—Part II: Impedance Analysis and Implications for Inductor Design

D. Sarkar, C. Xu, H. Li and K. Banerjee, "High-Frequency Behavior of Graphene-Based Interconnects—Part II: Impedance Analysis and Implications for Inductor Design," in IEEE Transactions on Electron Devices, vol. 58, no. 3, pp. 853-859, March 2011.

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High-Frequency Behavior of Graphene-Based Interconnects—Part I: Impedance Modeling

D. Sarkar, C. Xu, H. Li and K. Banerjee, "High-Frequency Behavior of Graphene-Based Interconnects—Part I: Impedance Modeling," in IEEE Transactions on Electron Devices, vol. 58, no. 3, pp. 843-852, March 2011.

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Prospects of carbon nanomaterials for next-generation green electronics

Kaustav Banerjee ; Hong Li ; Chuan Xu ; Yasin Khatami ; Hamed F. Dadgour ; Deblina Sarkar; and Weil Liu, "Prospects of carbon nanomaterials for next-generation green electronics," 10th IEEE International Conference on Nanotechnology, Seoul, 2010, pp. 56-61.

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Electron-hole duality during band-to-band tunneling process in graphene-nanoribbon tunnel-field-effect-transistors

Deblina Sarkar, Michael Krall, and Kaustav Banerjee, Appl. Phys. Lett. 97, 263109 (2010).

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A quantitative inquisition into ESD sensitivity to strain in nanoscale CMOS protection devices

D. Sarkar, S. Thijs, D. Linten, C. Russ, H. Gossner and K. Banerjee, "A quantitative inquisition into ESD sensitivity to strain in nanoscale CMOS protection devices," 2010 International Electron Devices Meeting, San Francisco, CA, 2010, pp. 35.4.1-35.4.4.

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A Novel Enhanced Electric-Field Impact-Ionization MOS Transistor

D. Sarkar, N. Singh and K. Banerjee, "A Novel Enhanced Electric-Field Impact-Ionization MOS Transistor," in IEEE Electron Device Letters, vol. 31, no. 11, pp. 1175-1177, Nov. 2010.

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AC conductance modeling and analysis of graphene nanoribbon interconnects

D. Sarkar, C. Xu, H. Li and K. Banerjee, "AC conductance modeling and analysis of graphene nanoribbon interconnects," 2010 IEEE International Interconnect Technology Conference, Burlingame, CA, 2010, pp. 1-3.

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Modeling of leakage current mechanisms in nanoscale DG MOSFET and its application to low power SRAM design

Sarkar, Deblina & Datta, Deepanjan & Dasgupta, Sudeb. (2008). Modeling of leakage current mechanisms in nanoscale DG MOSFET and its application to low power SRAM design. Journal of Computers. 3. 10.4304/jcp.3.2.37-47.

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Complete List of publications can be found at: https://scholar.google.com/citations?user=uu1VrU8AAAAJ&hl=en

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Deblina Sarkar publications