2020
DOI: 10.1002/aelm.202000515
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Wafer‐Scale Organic Complementary Inverters Fabricated with Self‐Assembled Monolayer Field‐Effect Transistors

Abstract: Self‐assembled monolayers (SAMs) of π‐conjugated molecules can achieve robust charge transport by the formation of ordered 2D layers at the desired regions, which enable their application for organic integrated circuits. Here, the self‐assembled monolayer field‐effect transistor concept is applied as a scalable method to realize fully integrated complementary inverters by stepwise semiconductor deposition. Two‐component stacked bilayer ambipolar transistors are fabricated by semiconducting self‐assembled monol… Show more

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Cited by 11 publications
(13 citation statements)
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“…Therefore, the BTBT derivatives have been extensively utilized in OFETs, photodetectors, synaptic devices, solar cells, and light emitting devices. [174][175][176][177][178][179] BTBT-based electronic and optoelectronic devices will be described as below.…”
Section: Btbt Derivatives-based Devicesmentioning
confidence: 99%
“…Therefore, the BTBT derivatives have been extensively utilized in OFETs, photodetectors, synaptic devices, solar cells, and light emitting devices. [174][175][176][177][178][179] BTBT-based electronic and optoelectronic devices will be described as below.…”
Section: Btbt Derivatives-based Devicesmentioning
confidence: 99%
“…The morphology of the BTBT-SAM can be found in a previous work. [22,46] For the SAMFETs-based optoelectronic devices, the PMMA was kept as an encapsulation layer. For other measurements, the PMMA was removed from the substrates by dissolving the PMMA in acetone, followed by rinsing with isopropyl alcohol.…”
Section: Heterojunction Device Preparation and Measurementsmentioning
confidence: 99%
“…In addition to their application in E-AB sensors, SAMs are also used as linkers with ordered domains to anchor analytes in electrochemical impedance spectroscopy (EIS) and field-effect biosensors. SAMs have also been used as ultrathin gate dielectric layers and a semiconducting active layer in transistors. They are also expected to be applicable for the modification of colloidal silicon nanocrystals or silicon quantum dots in fluorescence imaging in vivo . Furthermore, in recent years, much work has been devoted to exploring the interfacial laws of hydrophobic monolayers, such as the frictional force of surface interfaces, , molecular dynamics of hydrophilic and hydrophobic surfaces, and the interfacial density distribution of polar liquids on hydrophobic surfaces .…”
Section: Discussionmentioning
confidence: 99%