Milo Shaffer

Milo Shaffer

Imperial College London

H-index: 86

Europe-United Kingdom

About Milo Shaffer

Milo Shaffer, With an exceptional h-index of 86 and a recent h-index of 53 (since 2020), a distinguished researcher at Imperial College London, specializes in the field of Materials Chemistry, Nanomaterials, Electrochemistry, Composites.

His recent articles reflect a diverse array of research interests and contributions to the field:

High Performance Ductile and Pseudo-ductile Polymer Matrix Composites: a Review

Manufacture and characterisation of a structural supercapacitor demonstrator

White light-activated bactericidal coating using acrylic latex, crystal violet, and zinc oxide nanoparticles

Bicontinuous silica-epoxy nanocomposites by aerogel infusion

Variable capacity polymer based energy harvesters with integrated macroporous elastomer springs

Exploiting Organometallic Chemistry to Functionalize Small Cuprous Oxide Colloidal Nanocrystals

Long-range solvent templating and counterion behavior at a charged, nanoscale surfaces

Evaluation of healable epoxy matrices as covalent adaptive networks in uniaxial compression

Milo Shaffer Information

University

Position

Professor of Materials Chemistry

Citations(all)

34324

Citations(since 2020)

10439

Cited By

28442

hIndex(all)

86

hIndex(since 2020)

53

i10Index(all)

255

i10Index(since 2020)

210

Email

University Profile Page

Google Scholar

Milo Shaffer Skills & Research Interests

Materials Chemistry

Nanomaterials

Electrochemistry

Composites

Top articles of Milo Shaffer

High Performance Ductile and Pseudo-ductile Polymer Matrix Composites: a Review

2024/1/19

Manufacture and characterisation of a structural supercapacitor demonstrator

Composites Science and Technology

2024/1/5

White light-activated bactericidal coating using acrylic latex, crystal violet, and zinc oxide nanoparticles

Materials Advances

2024

Bicontinuous silica-epoxy nanocomposites by aerogel infusion

Composites Part A: Applied Science and Manufacturing

2024/7/1

Variable capacity polymer based energy harvesters with integrated macroporous elastomer springs

Nano Energy

2024/6/1

Exploiting Organometallic Chemistry to Functionalize Small Cuprous Oxide Colloidal Nanocrystals

Journal of the American Chemical Society

2024/2/1

Long-range solvent templating and counterion behavior at a charged, nanoscale surfaces

2023/11/14

Evaluation of healable epoxy matrices as covalent adaptive networks in uniaxial compression

Reactive and Functional Polymers

2023/11/1

Manufacturing multi-matrix composites: Out-of-vacuum bag consolidation

Journal of Manufacturing Science and Engineering

2023/11

Examining the quasi-static uniaxial compressive behaviour of commercial high-performance epoxy matrices

Polymers

2023/10/8

Confocal Microscopy for In Situ Multi‐Modal Characterization and Patterning of Laser‐Reduced Graphene Oxide (Adv. Funct. Mater. 30/2023)

Advanced Functional Materials

2023/7

Matched Ligands for Small, Stable Colloidal Nanoparticles of Copper, Cuprous Oxide and Cuprous Sulfide

Chemistry–A European Journal

2023/6/22

Electrochemical performance of supercapacitor electrodes based on carbon aerogel-reinforced spread tow carbon fiber fabrics

Composites Science and Technology

2023/6/16

Current collector design strategies: The route to realising scale-up of structural power composites

Composites Science and Technology

2023/5/3

A critical review of structural supercapacitors and outlook on future research challenges

2023/4/12

Silica aerogel infused hierarchical glass fiber polymer composites

Composites Communications

2023/4/1

Robust Single‐Walled Carbon Nanotube‐Infiltrated Carbon Fiber Electrodes for Structural Supercapacitors: from Reductive Dissolution to High Performance Devices

Advanced Functional Materials

2023/4

Multifunctional design, feasibility and requirements for structural power composites in future electric air taxis

Journal of Composite Materials

2023/2

Discovery of next-generation battery electrodes using topology optimisation

2023

Wet spinning imogolite nanotube fibres: an in situ process study

Nanoscale Advances

2023

See List of Professors in Milo Shaffer University(Imperial College London)