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Chemistry

D-Index
41
Citations
6233
World Ranking
17766
National Ranking
970

Overview

Avinash J. Patil is a researcher affiliated with the University of Bristol in the United Kingdom. Their research primarily focuses on the fields of Materials Science and Engineering, with significant work concentrated in the subfields of Biomedical Engineering, Biomaterials, Materials Chemistry, Mechanical Engineering, and Cellular and Molecular Neuroscience.

Their work covers diverse topics related to photoreceptor and optogenetics research, supramolecular self-assembly in materials, innovative microfluidic and catalytic techniques, origins and evolution of life, micro and nano robotics, modular robots and swarm intelligence, and 3D printing in biomedical research.

Patil has published research in several scientific outlets, with frequent contributions to journals such as Angewandte Chemie International Edition, Angewandte Chemie, Chem, Nature Communications, and Nature Chemistry. The most recent notable papers include:

  • "Catalytic processing in ruthenium-based polyoxometalate coacervate protocells," 2020, Nature Communications
  • "Hydrogel-Immobilized Coacervate Droplets as Modular Microreactor Assemblies," 2020, Angewandte Chemie International Edition
  • "Chemical-mediated translocation in protocell-based microactuators," 2021, Nature Chemistry
  • "Spontaneous Membranization in a Silk-Based Coacervate Protocell Model," 2022, Angewandte Chemie International Edition
  • "Autonomous oscillatory movement of sensory protocells in stratified chemical media," 2023, Chem

Their frequent co-authors comprise Stephen Mann, Liangfei Tian, Mei Li, Jianbo Liu, and Yan Qiao, with collaborative works ranging from four to fourteen joint publications each.

Best Publications

  • Fabrication of Graphene–Polymer Nanocomposites With Higher-Order Three-Dimensional Architectures

    Jemma L. Vickery;Avinash J. Patil;Stephen Mann

  • Aqueous Stabilization and Self‐Assembly of Graphene Sheets into Layered Bio‐Nanocomposites using DNA

    Avinash J. Patil;Jemma L. Vickery;Thomas B. Scott;Stephen Mann

  • Interfacial assembly of protein–polymer nano-conjugates into stimulus-responsive biomimetic protocells

    Xin Huang;Mei Li;David C Green;David S Williams

  • The fabrication of nano-hydroxyapatite on PLGA and PLGA/collagen nanofibrous composite scaffolds and their effects in osteoblastic behavior for bone tissue engineering.

    Michelle Ngiam;Susan Liao;Avinash J. Patil;Ziyuan Cheng

  • Design and construction of higher-order structure and function in proteinosome-based protocells.

    Xin Huang;Avinash J. Patil;Mei Li;Stephen Mann

  • Programmed assembly of synthetic protocells into thermoresponsive prototissues

    Pierangelo Gobbo;Avinash J. Patil;Mei Li;Robert Harniman

  • Spontaneous assembly of chemically encoded two-dimensional coacervate droplet arrays by acoustic wave patterning

    Liangfei Tian;Nicolas C Martin;Philip G. Bassindale;Avinash J Patil

  • Synthesis and self-assembly of organoclay-wrapped biomolecules.

    Avinash J. Patil;Eswaramoorthy Muthusamy;Stephen Mann

  • Enzyme-powered motility in buoyant organoclay/DNA protocells

    B. V. V. S. Pavan Kumar;Avinash J. Patil;Stephen Mann

  • Preparation of high quality nanowires by tobacco mosaic virus templating of gold nanoparticles

    Keith M. Bromley;Avinash J. Patil;Adam W. Perriman;Gerald Stubbs

  • Polymer/nucleotide droplets as bio-inspired functional micro-compartments

    David S. Williams;Shogo Koga;C. Rohaida C. Hak;Animesh Majrekar

  • Fabrication of Mineralized Polymeric Nanofibrous Composites for Bone Graft Materials

    Michelle Ngiam;Susan Liao;Avinash J. Patil;Ziyuan Cheng

  • Fabrication of Continuous and Segmented Polymer/Metal Oxide Nanowires Using Cylindrical Micelles and Block Comicelles as Templates

    Hai Wang;Avinash J. Patil;Kun Liu;Srebri Petrov

  • Synthesis of yttria stabilized cubic zirconia (YSZ) powders by microwave-hydrothermal route

    Y.B. Khollam;A.S. Deshpande;A.J. Patil;H.S. Potdar

  • Self-assembly of bio–inorganic nanohybrids using organoclay building blocks

    Avinash J. Patil;Stephen Mann

  • Artificial morphogen-mediated differentiation in synthetic protocells

    Liangfei Tian;Mei Li;Avinash J. Patil;Bruce W. Drinkwater

  • Spontaneous Structuration in Coacervate‐Based Protocells by Polyoxometalate‐Mediated Membrane Assembly

    David S. Williams;Avinash J. Patil;Stephen Mann

  • Novel bioinorganic nanostructures based on mesolamellar intercalation or single-molecule wrapping of DNA using organoclay building blocks.

    Avinash J. Patil;Mei Li;Erik Dujardin;Stephen Mann

  • Fabrication of functional protein–organoclay lamellar nanocomposites by biomolecule-induced assembly of exfoliated aminopropyl-functionalized magnesium phyllosilicates

    Avinash J. Patil;Eswaramoorthy Muthusamy;Stephen Mann

  • Magnesium and calcium organophyllosilicates: synthesis and in vitro cytotoxicity study.

    Hyo-Kyung Han;Young-Chul Lee;Moo-Yeol Lee;Avinash J. Patil

  • Guest‐Molecule‐Directed Assembly of Mesostructured Nanocomposite Polymer/Organoclay Hydrogels

    Jessica E. Martin;Avinash J. Patil;Michael F. Butler;Stephen Mann

Frequent Co-Authors

Stephen Mann
Stephen Mann University of Bristol
Krzysztof K. K. Koziol
Krzysztof K. K. Koziol Cranfield University
Ian Manners
Ian Manners University of Victoria
Bruce W. Drinkwater
Bruce W. Drinkwater University of Bristol
David S. Williams
David S. Williams University of California, Los Angeles
Kemin Wang
Kemin Wang Hunan University
Anthony P. Hollander
Anthony P. Hollander University of Liverpool
Andrew Collins
Andrew Collins University of Oslo
Mato Knez
Mato Knez CIC nanoGUNE
Mitchell A. Winnik
Mitchell A. Winnik University of Toronto

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