Peter C. Innis

About Peter C. Innis

Peter C. Innis, With an exceptional h-index of 38 and a recent h-index of 19 (since 2020), a distinguished researcher at University of Wollongong, specializes in the field of Conducting Polymers, Electroactive Polymers, Fabrication.

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

Few-layer hexagonal boron nitride/3D printable polyurethane composite for neutron radiation shielding applications

Tuning the electrophoretic separations on a surface-accessible and flexible fibre-based microfluidic devices

Toward Three‐Dimensional Printed Thermal Conductive Polymeric Composites Using a Binary‐Composite Hybrid Based on Boron Nitride Nanoparticles and Micro‐Diamonds

Interplay between thermal and magnetic properties of polymer nanocomposites with superparamagnetic Fe3O4 nanoparticles

Surface functionalization of low-cost textile-based microfluidics for manipulation of electrophoretic selectivity of charged analytes

3D Printed Boron Nitride Polyurethane Composites Electroosmotic Pump

Melt polymer drawn single and multi-capillary fibre-based electroosmotic pumps

Thread-based isotachophoresis coupled with desorption electrospray ionization mass spectrometry for clean-up, preconcentration, and determination of alkaloids in biological fluids

Peter C. Innis Information

University

Position

Australia

Citations(all)

4617

Citations(since 2020)

2034

Cited By

3559

hIndex(all)

38

hIndex(since 2020)

19

i10Index(all)

76

i10Index(since 2020)

46

Email

University Profile Page

Google Scholar

Peter C. Innis Skills & Research Interests

Conducting Polymers

Electroactive Polymers

Fabrication

Top articles of Peter C. Innis

Few-layer hexagonal boron nitride/3D printable polyurethane composite for neutron radiation shielding applications

Composites Science and Technology

2023/3/1

Tuning the electrophoretic separations on a surface-accessible and flexible fibre-based microfluidic devices

Analytical Methods

2023

Toward Three‐Dimensional Printed Thermal Conductive Polymeric Composites Using a Binary‐Composite Hybrid Based on Boron Nitride Nanoparticles and Micro‐Diamonds

Macromolecular Rapid Communications

2023/11

Interplay between thermal and magnetic properties of polymer nanocomposites with superparamagnetic Fe3O4 nanoparticles

Journal of Magnetism and Magnetic Materials

2023/5/23

Surface functionalization of low-cost textile-based microfluidics for manipulation of electrophoretic selectivity of charged analytes

Microfluidics and Nanofluidics

2022/12

3D Printed Boron Nitride Polyurethane Composites Electroosmotic Pump

2022/11/14

Melt polymer drawn single and multi-capillary fibre-based electroosmotic pumps

Microfluidics and Nanofluidics

2022/6

Thread-based isotachophoresis coupled with desorption electrospray ionization mass spectrometry for clean-up, preconcentration, and determination of alkaloids in biological fluids

Analytica Chimica Acta

2022/2/8

Nanomaterial-assisted thread-based isotachophoresis with on-thread solute trapping

Analyst

2022

Thermally drawn biodegradable fibers with tailored topography for biomedical applications

Journal of Biomedical Materials Research Part B: Applied Biomaterials

2021/5

Tunable flow rate in textile-based materials utilising composite fibres

The Journal of The Textile Institute

2021/4/3

3D printing of highly flexible, cytocompatible nanocomposites for thermal management

Journal of Materials Science

2021/4

Significant Effect of Electronic Coupling on Electron Transfer between Surface-Bound Porphyrins and Co2+/3 Complex Electrolytes

The Journal of Physical Chemistry C

2020/4/9

Substrate-dependent Electron-Transfer Rate of Mixed-ligand Electrolytes: Tuning Electron-Transfer Rate without Changing Driving Force

Journal of the American Chemical Society

2020/12/22

Applications of nanomaterials in ambient ionization mass spectrometry

2021/3/1

Wireless bipolar electrode-based textile electrofluidics: towards novel micro-total-analysis systems

Lab on a Chip

2021

Fused filament fabrication 3D printed polylactic acid electroosmotic pumps

Lab on a chip

2021

The impact of insufficient time resolution on dye regeneration lifetime determined using transient absorption spectroscopy

Physical Chemistry Chemical Physics

2021

‘One layer at a time’: unlocking novel materials and structures for neutron radiation environments through additive manufacturing

2020/11/11

3D textile structures with integrated electroactive electrodes for wearable electrochemical sensors

The Journal of The Textile Institute

2020/11/1

See List of Professors in Peter C. Innis University(University of Wollongong)