Finding the equilibrium of organic electrochemical transistors

被引:0
|
作者
Vikash Kaphle
Pushpa Raj Paudel
Drona Dahal
Raj Kishen Radha Krishnan
Björn Lüssem
机构
[1] Kent State University,Department of Physics
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Organic Electrochemical Transistors are versatile sensors that became essential for the field of organic bioelectronics. However, despite their importance, an incomplete understanding of their working mechanism is currently precluding a targeted design of Organic Electrochemical Transistors and it is still challenging to formulate precise design rules guiding materials development in this field. Here, it is argued that current capacitive device models neglect lateral ion currents in the transistor channel and therefore fail to describe the equilibrium state of Organic Electrochemical Transistors. An improved model is presented, which shows that lateral ion currents lead to an accumulation of ions at the drain contact, which significantly alters the transistor behavior. Overall, these results show that a better understanding of the interface between the organic semiconductor and the drain electrode is needed to reach a full understanding of Organic Electrochemical Transistors.
引用
收藏
相关论文
共 50 条
  • [1] Finding the equilibrium of organic electrochemical transistors
    Kaphle, Vikash
    Paudel, Pushpa Raj
    Dahal, Drona
    Krishnan, Raj Kishen Radha
    Lussem, Bjorn
    NATURE COMMUNICATIONS, 2020, 11 (01)
  • [2] Organic electrochemical transistors
    Jonathan Rivnay
    Sahika Inal
    Alberto Salleo
    Róisín M. Owens
    Magnus Berggren
    George G. Malliaras
    Nature Reviews Materials, 3
  • [3] Organic electrochemical transistors
    Rivnay, Jonathan
    Inal, Sahika
    Salleo, Alberto
    Owens, Roisin M.
    Berggren, Magnus
    Malliaras, George G.
    NATURE REVIEWS MATERIALS, 2018, 3 (02):
  • [4] Processing of organic electrochemical transistors
    Barbosa, Henrique Frulani de Paula
    Asyuda, Andika
    Skowrons, Michael
    Schander, Andreas
    Luessem, Bjoern
    MRS COMMUNICATIONS, 2024, 14 (02) : 132 - 148
  • [5] Thermodynamics of organic electrochemical transistors
    Matteo Cucchi
    Anton Weissbach
    Lukas M. Bongartz
    Richard Kantelberg
    Hsin Tseng
    Hans Kleemann
    Karl Leo
    Nature Communications, 13
  • [6] Thermodynamics of organic electrochemical transistors
    Cucchi, Matteo
    Weissbach, Anton
    Bongartz, Lukas M.
    Kantelberg, Richard
    Tseng, Hsin
    Kleemann, Hans
    Leo, Karl
    NATURE COMMUNICATIONS, 2022, 13 (01)
  • [7] "Clickable" Organic Electrochemical Transistors
    Fenoy, Gonzalo E.
    Hasler, Roger
    Quartinello, Felice
    Marmisolle, Waldemar A.
    Lorenz, Christoph
    Azzaroni, Omar
    Bauerle, Peter
    Knoll, Wolfgang
    JACS AU, 2022, 2 (12): : 2778 - 2790
  • [8] On the Modeling of Organic Electrochemical Transistors
    Bongartz, Lukas M.
    Cucchi, Matteo
    Leo, Karl
    Kleemann, Hans
    ORGANIC AND HYBRID SENSORS AND BIOELECTRONICS XV, 2022, 12210
  • [9] Processing of organic electrochemical transistors
    Henrique Frulani de Paula Barbosa
    Andika Asyuda
    Michael Skowrons
    Andreas Schander
    Björn Lüssem
    MRS Communications, 2024, 14 : 132 - 148
  • [10] Advances in Biosensors Based on Organic Thin Film Transistors and Organic Electrochemical Transistors
    Feng X.
    Gu W.
    Zhang X.
    Jiang H.
    Cailiao Daobao/Materials Review, 2019, 33 (04): : 1243 - 1250