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D-Index & Metrics

Chemistry

D-Index
45
Citations
7453
World Ranking
16441
National Ranking
4096

Overview

Jonathan J. Wilker is affiliated with Purdue University West Lafayette in the United States. Their research primarily focuses on materials science and engineering, with significant contributions to polymer surface interaction studies and biodegradable polymer synthesis and properties.

Their work spans multiple specialized subfields including surfaces, coatings and films, biomaterials, ocean engineering, mechanics of materials, and organic chemistry. The main topics addressed in their research include polymer surface interaction studies, marine biology and environmental chemistry, adhesion, friction and surface interactions, advanced polymer synthesis and characterization, surgical sutures and adhesives, as well as hemostasis and retained surgical items.

Jonathan J. Wilker has published extensively in journals such as ACS Applied Materials & Interfaces, ACS Applied Polymer Materials, Journal of Biomedical Materials Research Part A, Nature, and the Journal of the American Chemical Society. Notable recent publications include:

  • Sustainably sourced components to generate high-strength adhesives, 2023, Nature
  • Weak Bonds in a Biomimetic Adhesive Enhance Toughness and Performance, 2020, Journal of the American Chemical Society
  • Surface hydration for antifouling and bio-adhesion, 2020, Chemical Science
  • Changing polymer catechol content to generate adhesives for high versus low energy surfaces, 2020, Soft Matter
  • Underwater Bonding with a Biobased Adhesive from Tannic Acid and Zein Protein, 2023, ACS Applied Materials & Interfaces

Frequent collaborators in their research include Gudrun Schmidt, Julie C. Liu, Alexandre Lancelot, Clayton R. Westerman, and Amelia A. Putnam. These coauthors have contributed to multiple publications alongside Wilker, indicating ongoing research partnerships.

Best Publications

  • Metal-mediated cross-linking in the generation of a marine-mussel adhesive.

    Mary J. Sever;Jaime T. Weisser;Jennifer Monahan;Shalini Srinivasan

  • Polymer composition and substrate influences on the adhesive bonding of a biomimetic, cross-linking polymer.

    Cristina R. Matos-Pérez;James D. White;Jonathan J. Wilker

  • A review on tough and sticky hydrogels

    Charles W. Peak;Jonathan J. Wilker;Gudrun Schmidt

  • High Strength Underwater Bonding with Polymer Mimics of Mussel Adhesive Proteins

    Michael A. North;Chelsey A. Del Grosso;Jonathan J. Wilker

  • Simplified Polymer Mimics of Cross-Linking Adhesive Proteins

    Glenn Westwood;Trinity N. Horton;Jonathan J. Wilker

  • Visible absorption spectra of metal–catecholate and metal–tironate complexes

    Mary J. Sever;Jonathan J. Wilker

  • Sustainably sourced components to generate high-strength adhesives

    Unknown

  • Underwater Bonding with Charged Polymer Mimics of Marine Mussel Adhesive Proteins

    James D. White;Jonathan J. Wilker

  • Adhesive strength of marine mussel extracts on porcine skin.

    Lal Ninan;Jennifer Monahan;Richard L Stroshine;Jonathan J Wilker

  • Enhancing the Adhesion of a Biomimetic Polymer Yields Performance Rivaling Commercial Glues

    Heather J. Meredith;Courtney L. Jenkins;Jonathan J. Wilker

  • Weak Bonds in a Biomimetic Adhesive Enhance Toughness and Performance

    Michael G Mazzotta;Amelia A Putnam;Michael A North;Jonathan J Wilker

  • Alkyl Transfer to Metal Thiolates: Kinetics, Active Species Identification, and Relevance to the DNA Methyl Phosphotriester Repair Center of Escherichia coli Ada.

    Jonathan J. Wilker;Stephen J. Lippard

  • Cross-linking the protein precursor of marine mussel adhesives: bulk measurements and reagents for curing.

    Jennifer Monahan;Jonathan J. Wilker

  • A bioinspired elastin-based protein for a cytocompatible underwater adhesive

    M. Jane Brennan;Bridget F. Kilbride;Jonathan J. Wilker;Julie C. Liu

  • Surface hydration for antifouling and bio-adhesion

    Chelsey A Del Grosso;Chuan Leng;Kexin Zhang;Hsiang-Chieh Hung

  • The Iron‐Fortified Adhesive System of Marine Mussels

    Jonathan J. Wilker

  • Molecular Weight Effects upon the Adhesive Bonding of a Mussel Mimetic Polymer

    Courtney L. Jenkins;Heather J. Meredith;Jonathan J. Wilker

  • Integrating Mussel Chemistry into a Bio-Based Polymer to Create Degradable Adhesives

    Courtney L. Jenkins;Heather M. Siebert;Jonathan J. Wilker

  • Cooking Chemistry Transforms Proteins into High-Strength Adhesives.

    Jessica K Román;Jonathan J Wilker

  • Marine bioinorganic materials: mussels pumping iron

    Jonathan J Wilker

  • Absorption spectroscopy and binding constants for first-row transition metal complexes of a DOPA-containing peptide

    Mary J. Sever;Jonathan J. Wilker

  • Modeling the DNA Methylphosphotriester Repair Site in Escherichia coli Ada. Why Zinc and Four Cysteines

    Jonathan J. Wilker;Stephen J. Lippard

Frequent Co-Authors

Ivan J. Dmochowski
Ivan J. Dmochowski University of Pennsylvania
Phillip E. Fanwick
Phillip E. Fanwick Purdue University West Lafayette
Harry B. Gray
Harry B. Gray California Institute of Technology
Jay R. Winkler
Jay R. Winkler California Institute of Technology
John H. Dawson
John H. Dawson University of South Carolina
Brian R. Crane
Brian R. Crane Cornell University
Zhan Chen
Zhan Chen University of Michigan–Ann Arbor
Roger J. Narayan
Roger J. Narayan North Carolina State University
Akhilesh K. Gaharwar
Akhilesh K. Gaharwar Texas A&M University

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