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Chemistry

D-Index
42
Citations
6751
World Ranking
17501
National Ranking
393

Overview

Steven J. Langford is affiliated with Swinburne University of Technology in Australia, contributing to the fields of Materials Science and Engineering. Their research focuses primarily on Electrical and Electronic Engineering, Materials Chemistry, and Polymers and Plastics, with additional work in Bioengineering and Renewable Energy, Sustainability, and the Environment.

The scientist's research covers a range of topics including:

  • Conducting polymers and applications
  • Organic Electronics and Photovoltaics
  • Gas Sensing Nanomaterials and Sensors
  • Analytical Chemistry and Sensors
  • Advanced Photocatalysis Techniques
  • Ammonia Synthesis and Nitrogen Reduction
  • Crystallization and Solubility Studies

Frequent collaborators in their work include Salman Ali, Akhil Gupta, Mohammed A. Jameel, Chenghua Sun, and Mahnaz Shafiei.

Langford has published extensively in various scientific venues. The most frequent publication platforms include:

  • The Cambridge Structural Database
  • Chemosensors
  • Nanoscale
  • Synthetic Metals
  • Physical Chemistry Chemical Physics

Recent publications highlight a diverse range of studies in materials and sensor technologies:

  • External-pressure-electrochemistry coupling in solid-state lithium metal batteries, 2024, Nature Reviews Materials
  • Naphthalene diimide-based electron transport materials for perovskite solar cells, 2021, Journal of Materials Chemistry A
  • Dual-Functional X-Ray Photochromic Phosphor: High-Performance Detection and 3D Imaging, 2024, Advanced Functional Materials
  • Nanoporous naphthalene diimide surface enhances humidity and ammonia sensing at room temperature, 2021, Sensors and Actuators B Chemical
  • Recent Advances in Perylene Diimide-Based Active Materials in Electrical Mode Gas Sensing, 2021, Chemosensors

Best Publications

  • Chemistry of naphthalene diimides.

    Sheshanath V Bhosale;Chintan Hemant Jani;Steven James Langford

  • Optimization of reaction conditions for preparing carboxymethyl cellulose from sago waste

    V. Pushpamalar;S.J. Langford;M. Ahmad;Y.Y. Lim

  • A core-substituted naphthalene diimide fluoride sensor.

    Sheshanath V Bhosale;Sidhanath V Bhosale;Mohan B Kalyankar;Steven James Langford

  • Toward Controllable Molecular Shuttles

    Pier Lucio Anelli;Masumi Asakawa;Peter R. Ashton;Richard A. Bissell

  • Spectroscopy of Naphthalene Diimides and Their Anion Radicals

    Goja Andric;John Frank Boas;Alan Maxwell Bond;Gary D Fallon

  • Molecular logic: a half-subtractor based on tetraphenylporphyrin.

    Steven J Langford;Trevor Douglas Yann

  • Haemozoin (β-haematin) biomineralization occurs by self-assembly near the lipid/water interface

    T J Egan;Jack Chen;Katherine A de Villiers;Tebogo E Mabotha

  • RUII-POLYPYRIDINE COMPLEXES COVALENTLY LINKED TO ELECTRON ACCEPTORS AS WIRES FOR LIGHT-DRIVEN PSEUDOROTAXANE-TYPE MOLECULAR MACHINES

    Peter R. Ashton;Roberto Ballardini;Vincenzo Balzani;Edwin C. Constable

  • Resonance Raman spectroscopy reveals new insight into the electronic structure of beta-hematin and malaria pigment.

    Bayden Robert Wood;Steven James Langford;Brian Mark Cooke;Janelle Lim

  • Photostable Self-Cleaning Cotton by a Copper(II) Porphyrin/TiO2 Visible-Light Photocatalytic System

    Shabana Afzal;Walid Daoud;Steven James Langford

  • Constructing molecular machinery: A chemically-switchable [2]catenane [11]

    Vincenzo Balzani;Vincenzo Balzani;Steven J. Langford;Françisco M. Raymo;J. Fraser Stoddart

  • Superhydrophobic and photocatalytic self-cleaning cotton

    Shabana Afzal;Walid A. Daoud;Steven J. Langford

  • Raman imaging of hemozoin within the food vacuole of Plasmodium falciparum trophozoites.

    Bayden R Wood;Steven J Langford;Brian M Cooke;Fiona Kim Glenister

  • Simple Molecular Machines: Chemically Driven Unthreading and Rethreading of a [2]Pseudorotaxane

    Roberto Ballardini;Vincenzo Balzani;Alberto Credi;Maria Teresa Gandolfi

  • A chemodosimer based on a core-substituted naphthalene diimide for fluoride ion detection

    Dale Buckland;Sheshanath V. Bhosale;Steven J. Langford

  • Simple molecular-level machines. Interchange between different threads in pseudorotaxanes

    Alberto Credi;Marco Montalti;Vincenzo Balzani;Steven J. Langford

  • Novel method for in vivo hydroxyl radical measurement by microdialysis in fetal sheep brain in utero

    Edwin BingBing Yan;Jessica Kerry Unthank;Margie E Castillo-Melendez;Suzanne Lee Miller

  • Diazapyrenium-containing catenanes and rotaxanes

    Peter R. Ashton;Sue E. Boyd;Alexander Brindle;Steven J. Langford

  • Self-cleaning cotton by porphyrin-sensitized visible-light photocatalysis

    Shabana Afzal;Walid Daoud;Steven James Langford

  • Harnessing Brightness in Naphthalene Diimides

    Subashani Maniam;Heather F. Higginbotham;Toby D. M. Bell;Steven J. Langford

  • Synthesis and Photophysics of Core‐Substituted Naphthalene Diimides: Fluorophores for Single Molecule Applications

    Toby Desmond Maynard Bell;Sheryll Yap;Chintan Hemant Jani;Sheshanath V Bhosale

Frequent Co-Authors

Kenneth P. Ghiggino
Kenneth P. Ghiggino University of Melbourne
J. Fraser Stoddart
J. Fraser Stoddart Northwestern University
Michael N. Paddon-Row
Michael N. Paddon-Row University of New South Wales
Katrina A. Jolliffe
Katrina A. Jolliffe University of Sydney
Margherita Venturi
Margherita Venturi University of Bologna
Alan M. Bond
Alan M. Bond Monash University
Vincenzo Balzani
Vincenzo Balzani University of Bologna
Walid A. Daoud
Walid A. Daoud City University of Hong Kong
Chenghua Sun
Chenghua Sun Swinburne University of Technology

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