Search Results - "Frisbie, C Daniel"

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  1. 1

    Critical assessment of charge mobility extraction in FETs by Choi, Hyun Ho, Cho, Kilwon, Frisbie, C. Daniel, Sirringhaus, Henning, Podzorov, Vitaly

    Published in Nature materials (01-01-2018)
    “…Mobility is an important charge-transport parameter in organic, inorganic and hybrid semiconductors. We outline some of the common pitfalls of mobility…”
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    Journal Article
  2. 2

    Printable ion-gel gate dielectrics for low-voltage polymer thin-film transistors on plastic by Cho, Jeong Ho, Daniel Frisbie, C, Lee, Jiyoul, Xia, Yu, Kim, BongSoo, He, Yiyong, Renn, Michael J, Lodge, Timothy P

    Published in Nature materials (01-11-2008)
    “…An important strategy for realizing flexible electronics is to use solution-processable materials that can be directly printed and integrated into…”
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  3. 3

    Field Effect Modulation of Electrocatalytic Hydrogen Evolution at Back-Gated Two-Dimensional MoS2 Electrodes by Wang, Yan, Udyavara, Sagar, Neurock, Matthew, Frisbie, C. Daniel

    Published in Nano letters (11-09-2019)
    “…Electrocatalytic activity for hydrogen evolution at monolayer MoS2 electrodes can be enhanced by the application of an electric field normal to the electrode…”
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  4. 4

    Determination of Energy-Level Alignment in Molecular Tunnel Junctions by Transport and Spectroscopy: Self-Consistency for the Case of Oligophenylene Thiols and Dithiols on Ag, Au, and Pt Electrodes by Xie, Zuoti, Bâldea, Ioan, Frisbie, C. Daniel

    Published in Journal of the American Chemical Society (27-02-2019)
    “…We report detailed measurements of transport and electronic properties of molecular tunnel junctions based on self-assembled monolayers (SAMs) of…”
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  5. 5

    Energy Level Alignment in Molecular Tunnel Junctions by Transport and Spectroscopy: Self-Consistency for the Case of Alkyl Thiols and Dithiols on Ag, Au, and Pt Electrodes by Xie, Zuoti, Bâldea, Ioan, Frisbie, C. Daniel

    Published in Journal of the American Chemical Society (13-11-2019)
    “…We report here an extensive study of transport and electronic structure of molecular junctions based on alkyl thiols (CnT; n = 7, 8, 9, 10, 12) and dithiols…”
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  6. 6

    Optimization of Aerosol Jet Printing for High-Resolution, High-Aspect Ratio Silver Lines by Mahajan, Ankit, Frisbie, C. Daniel, Francis, Lorraine F

    Published in ACS applied materials & interfaces (12-06-2013)
    “…Aerosol jet printing requires control of a number of process parameters, including the flow rate of the carrier gas that transports the aerosol mist to the…”
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  7. 7

    Multicolored, Low-Power, Flexible Electrochromic Devices Based on Ion Gels by Moon, Hong Chul, Kim, Chang-Hyun, Lodge, Timothy P, Frisbie, C. Daniel

    Published in ACS applied materials & interfaces (09-03-2016)
    “…Ion gels composed of a copolymer and a room temperature ionic liquid are versatile solid-state electrolytes with excellent features including high ionic…”
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  8. 8

    "Cut and Stick" Rubbery Ion Gels as High Capacitance Gate Dielectrics by Lee, Keun Hyung, Kang, Moon Sung, Zhang, Sipei, Gu, Yuanyan, Lodge, Timothy P., Frisbie, C. Daniel

    Published in Advanced materials (Weinheim) (22-08-2012)
    “…A free‐standing polymer electrolyte called an ion gel is employed in both organic and inorganic thin‐film transistors as a high capacitance gate dielectric. To…”
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  9. 9

    Electrolyte-Gated Transistors for Organic and Printed Electronics by Kim, Se Hyun, Hong, Kihyon, Xie, Wei, Lee, Keun Hyung, Zhang, Sipei, Lodge, Timothy P., Frisbie, C. Daniel

    Published in Advanced materials (Weinheim) (04-04-2013)
    “…Here we summarize recent progress in the development of electrolyte‐gated transistors (EGTs) for organic and printed electronics. EGTs employ a high…”
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  10. 10

    Hopping transport and the Hall effect near the insulator–metal transition in electrochemically gated poly(3-hexylthiophene) transistors by Wang, Shun, Ha, Mingjing, Manno, Michael, Daniel Frisbie, C, Leighton, C

    Published in Nature communications (20-11-2012)
    “…Despite 35 years of investigation, much remains to be understood regarding charge transport in semiconducting polymers, including the ultimate limits on their…”
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  11. 11

    Electrical Resistance of Long Conjugated Molecular Wires by Ho Choi, Seong, Kim, BongSoo, Frisbie, C. Daniel

    “…The charge transport mechanism of a wire can be revealed by how its electrical resistance varies with length. We have measured the resistance and…”
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  12. 12

    Gravure Printing of Graphene for Large-area Flexible Electronics by Secor, Ethan B., Lim, Sooman, Zhang, Heng, Frisbie, C. Daniel, Francis, Lorraine F., Hersam, Mark C.

    Published in Advanced materials (Weinheim) (09-07-2014)
    “…Gravure printing of graphene is demonstrated for the rapid production of conductive patterns on flexible substrates. Development of suitable inks and printing…”
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  13. 13

    Printed, sub-2V ZnO Electrolyte Gated Transistors and Inverters on Plastic by Hong, Kihyon, Kim, Se Hyun, Lee, Keun Hyung, Frisbie, C. Daniel

    Published in Advanced materials (Weinheim) (05-07-2013)
    “…Printed, flexible sub‐2 V ZnO electrolyte gated transistors (EGTs) are demonstrated. ZnO EGTs with high‐capacitance ion‐gel gate insulators are printed on a…”
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  14. 14

    Mechanical Deformation Distinguishes Tunneling Pathways in Molecular Junctions by Xie, Zuoti, Bâldea, Ioan, Haugstad, Greg, Daniel Frisbie, C

    Published in Journal of the American Chemical Society (09-01-2019)
    “…Developing a clearer understanding of electron tunneling through molecules is a central challenge in molecular electronics. Here we demonstrate the use of…”
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  15. 15

    Site-specific chemical doping reveals electron atmospheres at the surfaces of organic semiconductor crystals by He, Tao, Stolte, Matthias, Wang, Yan, Renner, Rebecca, Ruden, P. Paul, Würthner, Frank, Frisbie, C. Daniel

    Published in Nature materials (01-11-2021)
    “…Chemical doping controls the electronic properties of organic semiconductors, but so far, doping protocols and mechanisms are less developed than in…”
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  16. 16

    High-Resolution Transfer Printing of Graphene Lines for Fully Printed, Flexible Electronics by Song, Donghoon, Mahajan, Ankit, Secor, Ethan B, Hersam, Mark C, Francis, Lorraine F, Frisbie, C. Daniel

    Published in ACS nano (25-07-2017)
    “…Pristine graphene inks show great promise for flexible printed electronics due to their high electrical conductivity and robust mechanical, chemical, and…”
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  17. 17

    Electronic Impurity Doping in CdSe Nanocrystals by Sahu, Ayaskanta, Kang, Moon Sung, Kompch, Alexander, Notthoff, Christian, Wills, Andrew W, Deng, Donna, Winterer, Markus, Frisbie, C. Daniel, Norris, David J

    Published in Nano letters (09-05-2012)
    “…We dope CdSe nanocrystals with Ag impurities and investigate their optical and electrical properties. Doping leads not only to dramatic changes but surprising…”
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  18. 18

    A Pedagogical Perspective on Ambipolar FETs by Kang, Moon Sung, Frisbie, C. Daniel

    Published in Chemphyschem (03-06-2013)
    “…The operation of an ambipolar field‐effect transistor (FET) is described using a simple diagram depicting the gate voltage and channel potential profile…”
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  19. 19

    Performance and Stability of Aerosol-Jet-Printed Electrolyte-Gated Transistors Based on Poly(3-hexylthiophene) by Kim, Se Hyun, Hong, Kihyon, Lee, Keun Hyung, Frisbie, C. Daniel

    Published in ACS applied materials & interfaces (24-07-2013)
    “…We report performance optimization and stability analysis of aerosol-jet-printed electrolyte-gated transistors (EGTs) based on the polymer semiconductor…”
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  20. 20

    Polymer Electrolyte-Gated Organic Field-Effect Transistors:  Low-Voltage, High-Current Switches for Organic Electronics and Testbeds for Probing Electrical Transport at High Charge Carrier Density by Panzer, Matthew J, Frisbie, C. Daniel

    Published in Journal of the American Chemical Society (23-05-2007)
    “…We report the fabrication and extensive characterization of solid polymer electrolyte-gated organic field-effect transistors (PEG-FETs) in which a polyethylene…”
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