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Robert Chapman

University of Newcastle Australia · AU
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Area of research
Organic Chemistry · Surfaces, Coatings and Films
Research interest
Research interests include Advanced Polymer Synthesis and Characterization, Polymer Surface Interaction Studies, Supramolecular Self-Assembly in Materials, and Chemical Synthesis and Analysis.
h-index
46
citations
9,851
works
132
NIH funding
primary concept
email

Recent publications

Identifying Polymers that Bind or Reject Proteins with Machine Learning: Handling Categorical Features within a GPR Model.
2026cited by 0position: selecteddoi
High throughput screening for the design of protein binding polymers.
2025cited by 1position: selecteddoi
FRET-Based Investigation of the Dynamics of Peptide-Folded Single Chain Nanoparticles Inside Cancer Cells.
2025cited by 0position: selecteddoi
Confinement of folding motifs within central blocks improves single chain polymer nanoparticle folding
Polymer Chemistry 2024cited by 12position: selecteddoi
Collapsed Star Copolymers Exhibiting Near Perfect Mimicry of the Therapeutic Protein "TRAIL".
2024cited by 5position: selecteddoi
Main chain selective polymer degradation: controlled by the wavelength and assembly.
2024cited by 4position: selecteddoi
From Hofmeister to hydrotrope: Effect of anion hydrocarbon chain length on a polymer brush.
2023cited by 7position: selecteddoi
Peptide-Conjugated Micelles Make Effective Mimics of the TRAIL Protein for Driving Apoptosis in Colon Cancer.
2023cited by 5position: selecteddoi
PET-RAFT Enables Efficient and Automated Multiblock Star Synthesis
Macromolecules 2022cited by 31position: selecteddoi
A High Throughput Approach for Designing Polymers That Mimic the TRAIL Protein.
2022cited by 11position: selecteddoi
Fluorescence enables high throughput screening of polyelectrolyte–protein binding affinities
Polymer Chemistry 2022cited by 6position: selecteddoi
Traceless pH-Sensitive Antibody Conjugation Inspired by Citraconic Anhydride.
2022cited by 5position: selecteddoi
Delivering hydrophilic peptide inhibitors of heat shock protein 70 into cancer cells.
2022cited by 3position: selecteddoi
Enabling peristalsis of human colon tumor organoids on microfluidic chips
Biofabrication 2021cited by 71position: middledoi
Enabling peristalsis of human colon tumor organoids on microfluidic chips.
2021cited by 46position: selecteddoi
The Core-Shell Structure, Not Sugar, Drives the Thermal Stabilization of Single-Enzyme Nanoparticles.
2021cited by 9position: selecteddoi
Regulating the uptake of poly(N-(2-hydroxypropyl) methacrylamide)-based micelles in cells cultured on micropatterned surfaces.
2021cited by 2position: selecteddoi
Tuneable peptide cross-linked nanogels for enzyme-triggered protein delivery.
2020cited by 25position: selecteddoi
Well-Defined Polymers for Nonchemistry Laboratories using Oxygen Tolerant Controlled Radical Polymerization
Journal of Chemical Education 2020cited by 20position: selecteddoi
Polyion Complex-Templated Synthesis of Cross-Linked Single-Enzyme Nanoparticles
Macromolecules 2020cited by 18position: selecteddoi
Real time monitoring of peptide delivery<i>in vitro</i>using high payload pH responsive nanogels
Polymer Chemistry 2020cited by 18position: selecteddoi
Polyion Complex Micelles for Protein Delivery Benefit from Flexible Hydrophobic Spacers in the Binding Group.
2020cited by 12position: selecteddoi
Oxidation of graphene with variable defects: alternately symmetrical escape and self-restructuring of carbon rings.
2020cited by 5position: selecteddoi
All Wrapped up: Stabilization of Enzymes within Single Enzyme Nanoparticles.
2019cited by 101position: selecteddoi
A Dual Wavelength Polymerization and Bioconjugation Strategy for High Throughput Synthesis of Multivalent Ligands.
2019cited by 21position: selecteddoi
Correlation between polymer architecture and polyion complex micelle stability with proteins in spheroid cancer models as seen by light-sheet microscopy
Polymer Chemistry 2019cited by 10position: selecteddoi
Polymer mediated transport of the Hsp90 inhibitor LB76, a polar cyclic peptide, produces an Hsp90 cellular phenotype.
2019cited by 4position: selecteddoi
Up in the air: oxygen tolerance in controlled/living radical polymerisation
Chemical Society Reviews 2018cited by 407position: middledoi
Combinatorial Low‐Volume Synthesis of Well‐Defined Polymers by Enzyme Degassing
Angewandte Chemie International Edition 2016cited by 150position: firstdoi
Combinatorial Low‐Volume Synthesis of Well‐Defined Polymers by Enzyme Degassing
Angewandte Chemie 2016cited by 68position: firstdoi

Grants

No grants ingested yet.

Frequent collaborators

Robert Chapman · University of Newcastle Australia25 papers (2019–2026)Martina H. Stenzel · New South Wales Institute of Psychiatry16 papers (2019–2026)Zihao Li · Donghua University4 papers (2020–2024)Sébastien Perrier · Royal Pharmaceutical Society4 papers (2012–2013)Martina H. Stenzel · UNSW Sydney3 papers (2016–2021)Adam J. Gormley · Rutgers, The State University of New Jersey3 papers (2016–2018)Katrina A. Jolliffe · The University of Sydney3 papers (2012–2013)Shelli R. McAlpine · Harvard University3 papers (2019–2022)Ming Liang Koh · Université Claude Bernard Lyon 12 papers (2012–2013)Molly M. Stevens · Center for NanoScience2 papers (2016–2016)Molly M. Stevens · Panagiotis & Aglaia Kyriakou Children's Hospital2 papers (2019–2020)Carolin Bapp · 2 papers (2025–2026)Gregory G. Warr · The University of Sydney2 papers (2013–2013)Russul Al-Nakashli · UNSW Sydney1 papers (2021–2021)Gungun Lin · University of Technology Sydney1 papers (2021–2021)Lining Arnold Ju · The University of Sydney1 papers (2021–2021)Yingqi Zhang · Air Force Medical University1 papers (2021–2021)Jonathan Yeow · Center for NanoScience1 papers (2018–2018)Maarten Danial · Intravacc (Netherlands)1 papers (2012–2012)Vasso Apostolopoulos · Monash University1 papers (2012–2012)
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