Siew Ting Melissa Tan

Siew Ting Melissa Tan

Stanford University

H-index: 12

North America-United States

About Siew Ting Melissa Tan

Siew Ting Melissa Tan, With an exceptional h-index of 12 and a recent h-index of 12 (since 2020), a distinguished researcher at Stanford University, specializes in the field of Organic Electronics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Volumetric Electron Transfer from Metabolites to Chemically Doped Polymer Electrodes

Conjugated polymers for microwave applications: untethered sensing platforms and multifunctional devices

Tuning organic electrochemical transistor threshold voltage using chemically doped polymer gates

Mixed Ionic-Electronic Conduction, a Multifunctional Property in Organic Conductors

Conductive polymer composite as plastic solder

Organic Mixed Ionic Electronic Conductors for Electrochemical Devices

Electronic Skins

Operation mechanism of organic electrochemical transistors as redox chemical transducers

Siew Ting Melissa Tan Information

University

Position

___

Citations(all)

715

Citations(since 2020)

686

Cited By

229

hIndex(all)

12

hIndex(since 2020)

12

i10Index(all)

13

i10Index(since 2020)

13

Email

University Profile Page

Google Scholar

Siew Ting Melissa Tan Skills & Research Interests

Organic Electronics

Top articles of Siew Ting Melissa Tan

Volumetric Electron Transfer from Metabolites to Chemically Doped Polymer Electrodes

Advanced Functional Materials

2023/10

Siew Ting Melissa Tan
Siew Ting Melissa Tan

H-Index: 5

Adam Marks
Adam Marks

H-Index: 6

Alberto Salleo
Alberto Salleo

H-Index: 73

Conjugated polymers for microwave applications: untethered sensing platforms and multifunctional devices

Advanced Materials

2022/8

Tuning organic electrochemical transistor threshold voltage using chemically doped polymer gates

Advanced Materials

2022/8

Mixed Ionic-Electronic Conduction, a Multifunctional Property in Organic Conductors

Advanced Materials

2022/4/18

Conductive polymer composite as plastic solder

2022/1/11

Organic Mixed Ionic Electronic Conductors for Electrochemical Devices

2022

Siew Ting Melissa Tan
Siew Ting Melissa Tan

H-Index: 5

Electronic Skins

2022

Siew Ting Melissa Tan
Siew Ting Melissa Tan

H-Index: 5

Operation mechanism of organic electrochemical transistors as redox chemical transducers

Journal of Materials Chemistry C

2021

Redox-active polymers designed for the circular economy of energy storage devices

Electrochemical Society Meeting Abstracts 244

2023/12/22

Augmented reality interfaces using virtual customization of microstructured electronic skin sensor sensitivity performances

Advanced Functional Materials

2021/9

High‐Gain Chemically Gated Organic Electrochemical Transistor

Advanced Functional Materials

2021/5

Electropneumotactile Stimulation: Multimodal Haptic Actuators Enabled by a Stretchable Conductive Polymer on Inflatable Pockets

Advanced materials technologies

2020/6

Chemical to Electrical Transduction using Fuel Cell Powered Organic Electrochemical Transistors

2020/4/3

A transparent, self-healing and high-κ dielectric for low-field-emission stretchable optoelectronics

Nature materials

2020/2

See List of Professors in Siew Ting Melissa Tan University(Stanford University)

Co-Authors

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