Alexander Giovannitti

Alexander Giovannitti

Stanford University

H-index: 27

North America-United States

About Alexander Giovannitti

Alexander Giovannitti, With an exceptional h-index of 27 and a recent h-index of 27 (since 2020), a distinguished researcher at Stanford University, specializes in the field of Electrochemical Energy Storage, Electrocatalysis, Bioelectronics, Conjugated Polymers.

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

The impact of hydrogen peroxide production in OECTs for in vitro applications

Charge Carrier Induced Structural Ordering And Disordering in Organic Mixed Ionic Electronic Conductors

Controlling swelling in mixed transport polymers through alkyl side-chain physical cross-linking

An ordered, self-assembled nanocomposite with efficient electronic and ionic transport

Role of aggregates and microstructure of mixed-ionic–electronic-conductors on charge transport in electrochemical transistors

Origins of hydrogen peroxide selectivity during oxygen reduction on organic mixed ionic–electronic conducting polymers

Enhancing the backbone coplanarity of n-type copolymers for higher electron mobility and stability in organic electrochemical transistors

Impact of Side‐Chain Hydrophilicity on Packing, Swelling, and Ion Interactions in Oxy‐Bithiophene Semiconductors

Alexander Giovannitti Information

University

Position

___

Citations(all)

4072

Citations(since 2020)

3852

Cited By

1301

hIndex(all)

27

hIndex(since 2020)

27

i10Index(all)

39

i10Index(since 2020)

38

Email

University Profile Page

Google Scholar

Alexander Giovannitti Skills & Research Interests

Electrochemical Energy Storage

Electrocatalysis

Bioelectronics

Conjugated Polymers

Top articles of Alexander Giovannitti

The impact of hydrogen peroxide production in OECTs for in vitro applications

Journal of Materials Chemistry C

2024

Alberto Salleo
Alberto Salleo

H-Index: 73

Alexander Giovannitti
Alexander Giovannitti

H-Index: 18

Charge Carrier Induced Structural Ordering And Disordering in Organic Mixed Ionic Electronic Conductors

Advanced Materials

2024/1/10

Controlling swelling in mixed transport polymers through alkyl side-chain physical cross-linking

Proceedings of the National Academy of Sciences

2023/8/29

An ordered, self-assembled nanocomposite with efficient electronic and ionic transport

Nature Materials

2023/3

Role of aggregates and microstructure of mixed-ionic–electronic-conductors on charge transport in electrochemical transistors

Materials Horizons

2023

Origins of hydrogen peroxide selectivity during oxygen reduction on organic mixed ionic–electronic conducting polymers

Energy & Environmental Science

2023

Enhancing the backbone coplanarity of n-type copolymers for higher electron mobility and stability in organic electrochemical transistors

Chemistry of Materials

2022/9/27

Impact of Side‐Chain Hydrophilicity on Packing, Swelling, and Ion Interactions in Oxy‐Bithiophene Semiconductors

Advanced Materials

2022/9

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

Efficient electronic tunneling governs transport in conducting polymer-insulator blends

Journal of the American Chemical Society

2022/6/6

Critical analysis of self-doping and water-soluble n-type organic semiconductors: structures and mechanisms

Journal of Materials Chemistry C

2022

Organic neuromorphic electronics for sensorimotor integration and learning in robotics

Science Advances

2021/12/10

Electrochemistry of Thin Films with In Situ/Operando Grazing Incidence X‐Ray Scattering: Bypassing Electrolyte Scattering for High Fidelity Time Resolved Studies

Small

2021/10

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

Electrochemical Society Meeting Abstracts 244

2023/12/22

Alexander Giovannitti
Alexander Giovannitti

H-Index: 18

Reversible electrochemical charging of n-type conjugated polymer electrodes in aqueous electrolytes

Journal of the American Chemical Society

2021/9/1

N-type polymer based electrochemical device for direct enzymatic metabolite sensing and methods of making and using

2021/5/6

High‐Gain Chemically Gated Organic Electrochemical Transistor

Advanced Functional Materials

2021/5

The effect of alkyl spacers on the mixed ionic‐electronic conduction properties of n‐type polymers

Advanced Functional Materials

2021/4

Polaron delocalization in donor–acceptor polymers and its impact on organic electrochemical transistor performance

Angewandte Chemie International Edition

2021/3/29

See List of Professors in Alexander Giovannitti University(Stanford University)

Co-Authors

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