Advanced & Quantum Materials
Featured Articles
Illuminating Quantum Photonics with High-Performance Spectrometers
Quantum photonics relies on precise characterization of light from single-photon sources, quantum dots, integrated photonic circuits, and other emerging devices. Explore how high-resolution spectroscopy can help researchers measure spectral purity, emission wavelengths, resonances, and weak signals across a range of quantum photonics applications.
Decorating Graphene Oxide with Green Silver Nanoparticles
Researchers are exploring new ways to modify graphene oxide nanosheets with metal nanoparticles for advanced material applications. This study demonstrates a simple one-pot approach for decorating graphene oxide with green-synthesized silver nanoparticles, using UV-VIS absorption spectroscopy to investigate the resulting nanomaterials
Characterizing Graphene with Cost-Effective Raman Spectroscopy
Raman spectroscopy provides valuable insight into graphene’s structure, defects, and layer thickness through its characteristic D, G, and 2D bands. This application explores practical considerations for graphene analysis and demonstrates how a more cost-effective Raman system can support material characterization without relying on expensive Raman microscopy platforms.
Customer Research & Publications
Efficient Flexible Organic/Inorganic Hybrid Perovskite Light-Emitting Diodes Based on Graphene Anode
HK Seo, H Kim, J Lee, MH Park, SH Jeong, YH Kim… - Advanced Materials, 2017 Highly efficient organic/inorganic hybrid perovskite light-emitting diodes (PeLEDs) based on graphene anode are developed...
One-step hydrothermal synthesis of porous 3D reduced graphene oxide/TiO 2 aerogel for carbamazepine photodegradation in aqueous solution
Mohsin Nawaz, Waheed Miran, Jiseon Jang, Dae Sung Lee In this study, the three-dimensional (3D) reduced graphene oxide/TiO2 (RGOT) aerogel was synthesized by a facile one-step hydrothermal...
The influence of sodium nanoparticles formation on luminescent properties of fluorophosphate glasses containing molecular clusters and quantum dots of lead selenide
ZO Lipatova, EV Kolobkova, AI Sidorov, NV Nikonorov - Optics and Spectroscopy, 2016 The influence of sodium nanoparticles and secondary heat treatment conditions on the spectralluminescent...
Fluorescence confocal microscopy as effective testing method of polypropylene fibers and single polymer composites
P Poszwa, K Kędzierski, B Barszcz, AB Nowicka - Polymer Testing, 2016 Single polymer composites are special type of composite made solely of one polymer. They are characterized by promising...
Iron Nanoparticles Embedded in Carbon Films: Structural and Optical properties
F Mashayekhi, A Shafiekhani, SA Sebt ... Fe target C2H2 gas inlet Page 5. 5 Kα (1486.6 eV) X-ray source. In the case of optical properties investigation StellarNet EPP- 2000 UV-visible spectrometer...
Design and Fabrication of Ceramic Microsystem Utilizing Glow Discharge for Analysis of Liquid Mixtures
J Macioszczyk, M Lenartowicz, K Malecha, LJ Golonka - Additional Papers and …, 2016 We present the results of our work on design and fabrication of Low Temperature Co-fired Ceramics (LTCC)...
Key Application Areas
Food Safety & Quality
Astronomy, Space & Remote Sensing
Thin Films & Optical Coatings
Pharmaceuticals & Nutraceuticals
Biomedical & Life Sciences
Environmental & Microplastics
Industrial & Process Analysis
Lighting, Displays & Radiometry
Recommended Spectrometers for Advanced Materials
Learn More
Explore spectroscopy and optical measurement for advanced materials through practical guides, application notes, videos, technical resources, and real-world research. Learn how UV-VIS, NIR, Raman, and optical spectroscopy can be used for material characterization, optical properties, thin films and coatings, nanomaterials, semiconductors, and emerging quantum materials. These Learning Centers bring together educational content and practical resources to help researchers and engineers better understand their measurements and characterize the materials driving next-generation technologies.
- Raman Learning Center — Explore Raman spectroscopy for advanced material identification, molecular structure, crystallinity, nanomaterials, semiconductors, and material characterization.
- Spectrometers Learning Center — Learn spectroscopy fundamentals and measurement techniques for optical properties, absorbance, transmission, reflectance, photoluminescence, and advanced materials research.
- Thin Film Learning Center — Explore thin film thickness, optical coatings, reflectance, transmission, deposition monitoring, and optical characterization for semiconductors and advanced materials.



