Replication Data for: High Performance, Flexible, and Thermally Stable All-Solid-State Organic Electrochemical Transistor Based on Thermoplastic Polyurethane Ion Gel (doi:10.21979/N9/JOFQBL)

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Part 1: Document Description
Part 2: Study Description
Part 3: Data Files Description
Part 4: Variable Description
Part 5: Other Study-Related Materials
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Document Description

Citation

Title:

Replication Data for: High Performance, Flexible, and Thermally Stable All-Solid-State Organic Electrochemical Transistor Based on Thermoplastic Polyurethane Ion Gel

Identification Number:

doi:10.21979/N9/JOFQBL

Distributor:

DR-NTU (Data)

Date of Distribution:

2023-09-14

Version:

1

Bibliographic Citation:

Hou, Kunqi, 2023, "Replication Data for: High Performance, Flexible, and Thermally Stable All-Solid-State Organic Electrochemical Transistor Based on Thermoplastic Polyurethane Ion Gel", https://doi.org/10.21979/N9/JOFQBL, DR-NTU (Data), V1, UNF:6:iNBNBEw8do12gqayuH89vw== [fileUNF]

Study Description

Citation

Title:

Replication Data for: High Performance, Flexible, and Thermally Stable All-Solid-State Organic Electrochemical Transistor Based on Thermoplastic Polyurethane Ion Gel

Identification Number:

doi:10.21979/N9/JOFQBL

Authoring Entity:

Hou, Kunqi (Nanyang Technological University)

Software used in Production:

Origin

Grant Number:

through the A*STAR IAF-ICP(No.I2201E0013)

Grant Number:

under an AcRF Tier 2 Grant (2019-T2-2-106)

Grant Number:

No.I1801E0030

Distributor:

DR-NTU (Data)

Access Authority:

Hou Kunqi

Depositor:

Hou Kunqi

Date of Deposit:

2023-09-14

Holdings Information:

https://doi.org/10.21979/N9/JOFQBL

Study Scope

Keywords:

Engineering, Engineering, Organic electrochemical transistor, Solid electrolyte, Ionic liquid, Complementary inverter, Flexible electronics

Abstract:

Organic electrochemical transistors (OECTs) are a generation of transistors with high transconductance, where the whole volume of the semiconducting channel is involved in the electrochemical doping process. However, the use of liquid electrolytes limits the application of OECTs, and the doping process is also complicated due to the presence of water in the electrolyte. In this study, thermoplastic polyurethane (TPU)-based solid electrolyte was used in OECTs for the first time. Three types of ionic liquids were blended with a TPU polymer matrix as a solid electrolyte and investigated on the OECTs based on three kinds of p-type conjugated semiconductors. An in situ spectrochemistry study was further carried out to confirm the doping/dedoping process of these conjugated semiconductors by the TPU-based solid electrolyte. The robustness and high stability of the fabricated solid-state OECTs (SSOECTs) were demonstrated through continuously applied bias, long time operation under ambient conditions, and varying temperatures (−50 to 120 °C). Highly flexible SSOECTs were also obtained on a polyethylene terephthalate (PET) substrate, which showed negligible fluctuation in on/off-current (Ion/Ioff) after 1000 cycles of bending. Based on these highperforming SSOECTs, inverter circuits were fabricated in both unipolar and complementary configurations, where n-type and p-type OECT-based complementary inverters showed a higher gain (46) compared with that of the unipolar design.

Kind of Data:

Raw data of main Figures

Methodology and Processing

Sources Statement

Data Access

Other Study Description Materials

Related Publications

Citation

Identification Number:

10.1021/acsaelm.3c00091

Bibliographic Citation:

Hou, K., Chen, S., Moudgil, A., Wu, X., Tam, T. L. D., Lew, W. S., & Leong, W. L. (2023). High Performance, Flexible, and Thermally Stable All-Solid-State Organic Electrochemical Transistor Based on Thermoplastic Polyurethane Ion Gel. ACS Applied Electronic Materials, 5(4), 2215-2226.

Citation

Identification Number:

10356/170478

Bibliographic Citation:

Hou, K., Chen, S., Moudgil, A., Wu, X., Tam, D. T. L., Lew, W. S. & Leong, W. L. (2023). High performance, flexible, and thermally stable all-solid-state organic electrochemical transistor based on thermoplastic polyurethane ion gel. ACS Applied Electronic Materials, 5(4), 2215-2226.

File Description--f118674

File: Data summary.tab

  • Number of cases: 6

  • No. of variables per record: 7

  • Type of File: text/tab-separated-values

Notes:

UNF:6:jNGsTgSiYNx+fmaPjd0IZw==

File Description--f118675

File: threshold voltage.tab

  • Number of cases: 11

  • No. of variables per record: 8

  • Type of File: text/tab-separated-values

Notes:

UNF:6:g/XYpv7Hqbbv5QquGN+Ntw==

Variable Description

List of Variables:

  • A - A
  • B - B
  • 50 - 50
  • D - D
  • 30 - 30
  • F - F
  • 10 - 10
  • P3HT - P3HT
  • B - B
  • C - C
  • D - D
  • E - E
  • PFT100 - PFT100
  • G - G
  • H - H

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Variable Format: numeric

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50

f118674 Location:

Summary Statistics: Max. 1.4833E-4; Mean 4.1565E-5; Valid 6.0; Min. 6.26E-6; StDev 5.307135036910217E-5

Variable Format: numeric

Notes: UNF:6:mcFHxUheHol0cm1qXPBABQ==

D

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30

f118674 Location:

Summary Statistics: Min. 1.37E-6; Valid 6.0; Max. 1.75E-5; StDev 6.123089634054581E-6; Mean 6.883333333333333E-6;

Variable Format: numeric

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F

f118674 Location:

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Variable Format: numeric

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10

f118674 Location:

Summary Statistics: StDev 2.430203317968821E-7; Mean 4.3178333333333334E-7; Max. 6.78E-7; Valid 6.0; Min. 1.57E-8

Variable Format: numeric

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P3HT

f118675 Location:

Variable Format: character

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B

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C

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Variable Format: numeric

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E

f118675 Location:

Summary Statistics: Min. NaN; Valid 0.0; Mean NaN; StDev NaN; Max. NaN

Variable Format: numeric

Notes: UNF:6:f5yeMayCVsovJYWD3yYtvA==

PFT100

f118675 Location:

Variable Format: character

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G

f118675 Location:

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