Researcher.Life Logo

Advanced Optical Materials : Impact Factor & More

eISSN: 2195-1071pISSN: 2195-1071

Aims and Scope of Advanced Optical Materials

Advanced Optical Materials is a monthly peer-reviewed scientific journal published by Wiley-VCH. It was established in 2013, after a section with the same name had been published since March 2012 in Advanced Materials. It covers all aspects of light-matter interactions. The founding editor-in-chief is Peter Gregory. Less

Key Metrics

CiteScore
14.7
Eigenfactor
0.01 - 0.05
Impact Factor
5 - 10
Scite Index
0.92 5-Year SI
SJR
Q1Atomic and Molecular Physics, and Optics
SNIP
1.76
Recommended pre-submission checks
Powered by Paperpal by Editage

Topics Covered on Advanced Optical Materials

Advanced Optical Materials Journal Specifications

Indexed in the following public directories

  • Web of Science Web of Science
  • Scopus Scopus
  • Inspec Inspec
  • SJR SJR
Overview
Publisher WILEY-V C H VERLAG GMBH
Language English
Frequency Semi-monthly
General Details
LanguageEnglish
FrequencySemi-monthly
Publication Start Year2013
Publisher URLVisit website
Website URLVisit website
View less

Planning to publish in Advanced Optical Materials ?

Upload your Manuscript to get

  • Degree of match
  • Common matching concepts
  • Additional journal recommendations
Free Report

Recently Published Papers in Advanced Optical Materials

Selective Reflection of Chiral Ferroelectric Nematic Liquid Crystals Tuned by Electric Field Along the Helix Axis
  • 5 May 2026
  • Advanced Optical Materials
The Evolution of Laser‐Induced Damage Patterns in Polymer Stabilized Liquid Crystals: Insights From Morphological Characterization and Thermo‐Driven Simulations
  • 5 May 2026
  • Advanced Optical Materials
An Optical–Electrical Decoupling Strategy for Fabricating Wood‐Waste‐Derived Laser‐Driven Diffusers for Specialized Lighting Inspired by Atmospheric Sunlight Scattering
  • 28 Apr 2026
  • Advanced Optical Materials
BaCd <sub>2</sub> P <sub>2</sub> : A Promising Impurity‐Tolerant Counterpart of Gaas for Photovoltaics
  • 25 Apr 2026
  • Advanced Optical Materials
Materials for Suppressed Triplet‐Polaron Quenching in Efficient and Long‐Lifetime Phosphorescent OLEDs
  • 24 Apr 2026
  • Advanced Optical Materials
Room‐Temperature Interfacial Reactive‐Template Epitaxy of NiO/4H‐SiC for Dual‐Mode UV Photodetection
  • 22 Apr 2026
  • Advanced Optical Materials
Selective Reflection of Chiral Ferroelectric Nematic Liquid Crystals Tuned by Electric Field Along the Helix Axis
  • 5 May 2026
  • Advanced Optical Materials
The Evolution of Laser‐Induced Damage Patterns in Polymer Stabilized Liquid Crystals: Insights From Morphological Characterization and Thermo‐Driven Simulations
  • 5 May 2026
  • Advanced Optical Materials
An Optical–Electrical Decoupling Strategy for Fabricating Wood‐Waste‐Derived Laser‐Driven Diffusers for Specialized Lighting Inspired by Atmospheric Sunlight Scattering
  • 28 Apr 2026
  • Advanced Optical Materials
BaCd <sub>2</sub> P <sub>2</sub> : A Promising Impurity‐Tolerant Counterpart of Gaas for Photovoltaics
  • 25 Apr 2026
  • Advanced Optical Materials
Materials for Suppressed Triplet‐Polaron Quenching in Efficient and Long‐Lifetime Phosphorescent OLEDs
  • 24 Apr 2026
  • Advanced Optical Materials
Room‐Temperature Interfacial Reactive‐Template Epitaxy of NiO/4H‐SiC for Dual‐Mode UV Photodetection
  • 22 Apr 2026
  • Advanced Optical Materials

FAQs on Advanced Optical Materials