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D-Index & Metrics

Chemistry

D-Index
41
Citations
9788
World Ranking
17664
National Ranking
4312

Overview

Kathryn L. Beers is affiliated with the National Institute of Standards and Technology in the United States. Their research primarily focuses on materials science and environmental science, with significant contributions in polymers and plastics, biomaterials, organic chemistry, materials chemistry, and industrial and manufacturing engineering.

Their scholarly output includes work on topics such as biodegradable polymer synthesis and properties, polymer crystallization and properties, microplastics and plastic pollution, recycling and waste management techniques, synthetic organic chemistry methods, polymer surface interaction studies, and advanced polymer synthesis and characterization.

Kathryn L. Beers has authored several scientific papers, including:

  • Tandem Heterogeneous Catalysis for Polyethylene Depolymerization via an Olefin-Intermediate Process, 2021, ACS Sustainable Chemistry & Engineering
  • Sustainability of Synthetic Plastics: Considerations in Materials Life-Cycle Management, 2021, JACS Au
  • Bottlebrush polymers in the melt and polyelectrolytes in solution share common structural features, 2020, Proceedings of the National Academy of Sciences
  • Highly Versatile Strategy for the Production of Telechelic Polyolefins, 2022, ACS Macro Letters
  • Design and Characterization of Model Linear Low-Density Polyethylenes (LLDPEs) by Multidetector Size Exclusion Chromatography, 2020, Macromolecules

Their frequent co-authors include Sara V. Orski, Jack F. Douglas, Grace A. Kenlaw, Joel M. Sarapas, and Aaron A. Burkey.

Popular venues for their publications include:

  • Macromolecules
  • ACS Sustainable Chemistry & Engineering
  • JACS Au
  • Proceedings of the National Academy of Sciences
  • ACS Macro Letters

Best Publications

  • A buckling-based metrology for measuring the elastic moduli of polymeric thin films

    Christopher M. Stafford;Christopher Harrison;Kathryn L. Beers;Alamgir Karim

  • Validation of ATR FT-IR to identify polymers of plastic marine debris, including those ingested by marine organisms.

    Melissa R Jung;F David Horgen;Sara V Orski;Viviana Rodriguez C

  • The Synthesis of Densely Grafted Copolymers by Atom Transfer Radical Polymerization

    Kathryn L. Beers;Scott G. Gaynor;Krzysztof Matyjaszewski;Sergei S. Sheiko

  • Synthesis of Molecular Brushes with Block Copolymer Side Chains Using Atom Transfer Radical Polymerization

    Hans G. Börner;Kathryn Beers;Krzysztof Matyjaszewski;Sergei S. Sheiko

  • Atom transfer radical polymerization of 2-hydroxyethyl methacrylate

    Kathryn L. Beers;Sohyun Boo;Scott G. Gaynor;Krzysztof Matyjaszewski

  • Polymerization of acrylates by atom transfer radical polymerization. Homopolymerization of 2-hydroxyethyl acrylate

    Simion Coca;Christina B. Jasieczek;Kathryn L. Beers;Krzysztof Matyjaszewski

  • Microfluidic Platform for the Generation of Organic-Phase Microreactors

    Zuzanna T Cygan;João T Cabral;Kathryn L Beers;Eric J Amis

  • Single Molecule Rod-Globule Phase Transition for Brush Molecules at a Flat Interface

    Sergei S. Sheiko;Svetlana A. Prokhorova;Kathryn L. Beers;Krzysztof Matyjaszewski

  • On the shape of bottle-brush macromolecules: Systematic variation of architectural parameters

    Silke Rathgeber;Tadeusz Pakula;Agnieszka Wilk;Krzysztof Matyjaszewski

  • Continuous Flow Enzyme-Catalyzed Polymerization in a Microreactor

    Santanu Kundu;Atul S. Bhangale;William E. Wallace;Kathleen M. Flynn

  • Solid-phase ATRP synthesis of peptide-polymer hybrids.

    Ying Mei;Kathryn L. Beers;H. C. Byrd;David L. Vanderhart

  • Hydrogels by atom transfer radical polymerization. I. Poly(N-vinylpyrrolidinone-g-styrene) via the macromonomer method

    Krzysztof Matyjaszewski;Kathryn L. Beers;Alison Kern;Scott G. Gaynor

  • A new synthetic method for controlled polymerization using a microfluidic system.

    Tao Wu;Ying Mei;João T Cabral;Chang Xu

  • Stiffness, strength, and ductility of nanoscale thin films and membranes: a combined wrinkling-cracking methodology.

    Jun Young Chung;Jung Hyun Lee;Kathryn L. Beers;Christopher M. Stafford

  • Tuning Cell Adhesion on Gradient Poly(2-hydroxyethyl methacrylate)-Grafted Surfaces

    Ying Mei;Tao Wu;Chang Xu;Kurt J. Langenbach

  • Measuring Molecular Weight by Atomic Force Microscopy

    Sergei S. Sheiko;Marcelo da Silva;David Shirvaniants;Isaac LaRue

  • Tandem Heterogeneous Catalysis for Polyethylene Depolymerization via an Olefin-Intermediate Process

    Lucas D. Ellis;Sara V. Orski;Grace A. Kenlaw;Andrew G. Norman

  • Bottle-brush macromolecules in solution: Comparison between results obtained from scattering experiments and computer simulations

    Silke Rathgeber;Tadeusz Pakula;Agnieszka Wilk;Krzysztof Matyjaszewski

  • Microfluidic interfacial tensiometry

    Steven D. Hudson;João T. Cabral;William J. Goodrum;Kathryn L. Beers

  • Molecular motion in a spreading precursor film.

    Hui Xu;David Shirvanyants;Kathryn Beers;Krzysztof Matyjaszewski

  • Effect of Block Length on Solvent Response of Block Copolymer Brushes: Combinatorial Study with Block Copolymer Brush Gradients

    Chang Xu;Tao Wu;Charles Michael Drain;James D. Batteas

  • CONTINUOUS FLOW ENZYME-CATALYZED POLYMERIZATION IN A MICROREACTOR | NIST

    Santanu S. Kundu;Atul S. Bhangale;William E. Wallace;Kathleen M. Flynn

Frequent Co-Authors

Krzysztof Matyjaszewski
Krzysztof Matyjaszewski Carnegie Mellon University
Eric J. Amis
Eric J. Amis University of Akron
Sergei S. Sheiko
Sergei S. Sheiko University of North Carolina at Chapel Hill
Alamgir Karim
Alamgir Karim University of Houston
Christopher M. Stafford
Christopher M. Stafford National Institute of Standards and Technology
Richard A. Gross
Richard A. Gross Rensselaer Polytechnic Institute
João T. Cabral
João T. Cabral Imperial College London
Jack F. Douglas
Jack F. Douglas National Institute of Standards and Technology
Charles Michael Drain
Charles Michael Drain City University of New York
Michael Rubinstein
Michael Rubinstein Duke University

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