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Paolo Ferruti

Paolo Ferruti

D-Index & Metrics

Chemistry

D-Index
54
Citations
9498
World Ranking
12703
National Ranking
422

Overview

Paolo Ferruti is affiliated with the University of Milan in Italy and focuses their research mainly in the field of materials science. Their work encompasses various aspects of polymer chemistry and related subfields, including polymers and plastics, biomaterials, materials chemistry, safety and risk reliability, and organic chemistry.

The scientist has contributed significantly to the study and development of flame retardant materials and their properties, as well as the synthesis and characterization of polymers. Their research interests also include biodegradable polymer synthesis, fire dynamics and safety research, supramolecular self-assembly in materials, dyeing and modifying textile fibers, and luminescence and fluorescent materials.

Frequent collaborators in their research include Elisabetta Ranucci, Jenny Alongi, Amedea Manfredi, Federico Carosio, and Sofia Treccani.

Paolo Ferruti has published extensively with notable contributions to several academic journals. The most frequent publication venues are:

  • Polymers
  • Polymer Degradation and Stability
  • Molecules
  • Frontiers in Bioengineering and Biotechnology
  • ACS Applied Materials & Interfaces

Some of the recent publications by Paolo Ferruti include:

  • "Hydrogen Bonding in a l-Glutamine-Based Polyamidoamino Acid and its pH-Dependent Self-Ordered Coil Conformation," 2020, Polymers
  • "Extra-Small Gold Nanospheres Decorated With a Thiol Functionalized Biodegradable and Biocompatible Linear Polyamidoamine as Nanovectors of Anticancer Molecules," 2020, Frontiers in Bioengineering and Biotechnology
  • "Polyamidoamines Derived from Natural α-Amino Acids as Effective Flame Retardants for Cotton," 2021, Polymers
  • "The Thermo-Oxidative Behavior of Cotton Coated with an Intumescent Flame Retardant Glycine-Derived Polyamidoamine: A Multi-Technique Study," 2021, Polymers
  • "Synergism between α-amino acid-derived polyamidoamines and sodium montmorillonite for enhancing the flame retardancy of cotton fabrics," 2024, Polymer Degradation and Stability

Best Publications

  • Polymers of N-acryloylmorpholine activated at one end and conjugates with bioactive materials and surfaces

    Francesco M. Veronese;Oddone Schiavon;Paolo Caliceti;Luciana Sartore

  • Poly(amido-amine)s: Biomedical Applications

    Paolo Ferruti;Maria A. Marchisio;Ruth Duncan

  • Synthesis of tertiary amine polymers

    F. Danusso;P. Ferruti

  • New synthetic amphiphilic polymers for steric protection of liposomes in vivo

    Vladimir P. Torchilin;Vladimir S. Trubetskoy;Kathleen R. Whiteman;Paolo Caliceti

  • High polymers of acrylic and methacrylic esters of N-hydroxysuccinimide as polyacrylamide and polymethacrylamide precursors

    P. Ferruti;A. Bettelli;Angelino Feré

  • Poly(amidoamine)s as potential nonviral vectors: ability to form interpolyelectrolyte complexes and to mediate transfection in vitro.

    Richardson Sc;Pattrick Ng;Man Yk;Ferruti P

  • Poly(amidoamine)s as potential endosomolytic polymers : Evaluation in vitro and body distribution in normal and tumour-bearing animals

    S. Richardson;P. Ferruti;R. Duncan

  • Amphoteric Linear Poly(amido-amine)s as Endosomolytic Polymers: Correlation between Physicochemical and Biological Properties

    Paolo Ferruti;Sara Manzoni;Simon C. W. Richardson;Ruth Duncan

  • New poly(amidoamine)s containing disulfide linkages in their main chain

    Elisa Emilitri;Elisabetta Ranucci;Paolo Ferruti

  • Synthesis, physico-chemical properties and biomedical applications of poly(amidoamine)s

    Paolo Ferruti;Maria Antonietta Marchisio;Rolando Barbucci

  • Therapeutic proteins : a comparison of chemical and biological properties of uricase conjugated to linear or branched poly(ethylene glycol) and poly(N-acryloylmorpholine)

    O Schiavon;P Caliceti;P Ferruti;F.M Veronese

  • Synthesis, characterisation and antitumour activity of platinum(II) complexes of novel functionalised poly(amido amine)s

    Paolo Ferruti;Elisabetta Ranucci;Francesco Trotta;Elisabetta Gianasi

  • Poly(amidoamine)s: Past, present, and perspectives

    Paolo Ferruti

  • In vitro release modulation and conformational stabilization of a model protein using swellable polyamidoamine nanosponges of β-cyclodextrin

    S. Swaminathan;Roberta Cavalli;F. Trotta;P. Ferruti

  • Linear amino polymers: Synthesis, protonation and complex formation

    Paolo Ferruti;Rolando Barbucci

  • Enhanced antiviral activity of Acyclovir loaded into β-cyclodextrin-poly(4-acryloylmorpholine) conjugate nanoparticles

    Roberta Cavalli;Manuela Donalisio;Andrea Civra;Paolo Ferruti

  • Novel Poly(amido‐amine)‐Based Hydrogels as Scaffolds for Tissue Engineering

    Paolo Ferruti;Sabrina Bianchi;Elisabetta Ranucci;Federica Chiellini

  • Degradation behaviour of block copolymers containing poly(lactic-glycolic acid) and poly(ethylene glycol) segments.

    Maurizio Penco;Silvia Marcioni;Paolo Ferruti;Salvatore D'Antone

  • Novel agmatine-containing poly(amidoamine) hydrogels as scaffolds for tissue engineering.

    Paolo Ferruti;Sabrina Bianchi;Elisabetta Ranucci;Federica Chiellini

  • Use of poly(amidoamine) drug conjugates for the delivery of antimalarials to Plasmodium.

    Patricia Urbán;Juan José Valle-Delgado;Nicolò Mauro;Joana Marques

  • Effect of different shielding groups on the polyelectrolyte behavior of polyamines

    R. Barbucci;Mario Casolaro;N. Danzo;V. Barone

Frequent Co-Authors

Ruth Duncan
Ruth Duncan Cardiff University
Francesco M. Veronese
Francesco M. Veronese University of Padua
Francesco Trotta
Francesco Trotta University of Turin
Maria Cristina Tanzi
Maria Cristina Tanzi Polytechnic University of Milan
Vincenzo Barone
Vincenzo Barone Scuola Normale Superiore di Pisa
Federica Chiellini
Federica Chiellini University of Pisa
Jenny Alongi
Jenny Alongi University of Milan
Paolo Caliceti
Paolo Caliceti University of Padua
Emo Chiellini
Emo Chiellini University of Pisa
Ezio Martuscelli
Ezio Martuscelli BP (United Kingdom)

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