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BreezeTM – Full Coverage From 400 nm to 2500 nm v4
The world’s smartest palm spectrometer for 400–2500 nm operates using one-button. Miniaturized optics make it highly efficient for maximum sensitivity with ultrafast acquisition.
Food Analysis with Confocal Raman Microscopy v3
This survey shows how Raman imaging can characterize food samples such as honey, chocolate, and fat spreads to help understand the products and production processes.
Laser Frequency Offset Locking with Moku:Pro
In this application note, we discuss the implementation of offset phase locking using a digital phasemeter, and characterize the stability of phase locking two lasers.
Cartesian Geometry EDXRF for Analysis of ULSD
This application note demonstrates the performance for the measurement of sulfur in ultra-low sulfur diesel using full polarization in 90° Cartesian geometry EDXRF.
Sample Preparation of Heavy Crude Oil
Application Note: Microwave Digestion and Trace Metals Analysis of Mixed Cannabis and Hemp Products
High Speed Applications in Home Lighting
In this application, the rapid scan rate of the Ocean FX spectrometer enables measurement of flicker (frequency, amplitude, chromatic variation) in home lighting.
Utilizing Infrared Spectroscopy at Air/Water Interface
Infrared reflection-absorption spectroscopy (IRRAS) is a powerful tool for the structural analysis of monolayers at the air/water interface.
In-Situ Crystallization Monitoring with Crystalline and Raman
Through-the-vial analytical capabilities for real-time Raman combined with accurate temperature-controlled parallel crystallizer with transmissivity measurement
Cutting-Edge Cryogenic Raman Microscope
This white paper describes applications of cryoRaman, a cryogenic Raman microscope offering VIS to NIR excitation, high magnetic fields, and full polarization control.
Spatiospectral Nanoimaging of Surface Phonon Plasmons v2
Combining imaging with broadband spectroscopy provides spatiospectral nanoimaging of 2D materials with nanometer spatial resolution and wide spectral coverage.
Total Protein Determination in Pharmaceutical Products (Vaccines) by TNb Analysis on multi N/C 2100S pharma v2
Since antigens used in pharmaceutical vaccine production typically consist of proteins, the analytical quantification of total protein is a method of choice.
Analysis of Food and Agricultural Samples Using PlasmaQuant® MS
The PlasmaQuant® MS allows for direct determination of all elements within a single routine analysis using ICP-MS with all-digital detection technology.
Trace Metals Analysis in Water-Methanol-Oil Mixtures by HR ICP-OES v2
HR ICP-OES with high-resolution optical system, superior sensitivity, matrix tolerance achieves lowest LOD for trace element analysis in complex water-alcohol-oil samples
Direct Analysis of Saline Matrices by HR ICP-OES v2
HR ICP-OES with high-resolution optical system, superior sensitivity, and matrix tolerance achieve sub-ppb detection limits for trace element analysis in saline matrices
Analysis of Elemental Impurities in Naphtha by ICP-MS according to ASTM D8110-17 v2
This application note demonstrates how the PlasmaQuant MS provides low detection limits, accurate results and long-term stability analyzing volatile solvents.
Safe and Fast Determination of N/S/Cl Contents in Lactic Acid by Means of Organic Elemental Analysis v2
This application note describes a how to achieve quantitative digestion of lactic acid without soot formation in the shortest measurement time.
Determination of Arsenic Species in Beverages by HPLC–ICP-MS
This application note describes a reliable and fast method for the separation of more than five As species by coupling a PQ LC HPLC system and a PlasmaQuant® MS, ICP-MS.
Fast and Reliable TS Determination in Liquefied Pressurized Gases (LPG) by Means of Elemental Analysis v2
This application note describes different application methods for the fast and reliable determination of widely varying sulfur contents.
2D Materials Characterization Using Nanoscale Spectroscopy
This application note describes using complementary s-SNOM and AFM-IR techniques to characterize 2D materials such as graphene, nanoantennae, and semiconductor materials.
Ultra-trace Determination of Mercury in Environmental Waters Using the PlasmaQuant® MS ver. 2
The determination of mercury concentrations in environmental samples such as natural waters and wastewaters is important in environmental risk assessment.
Monitoring Microplastics in Our Oceans
Integrating Raman spectroscopy and holography, researchers are developing a system capable of in-situ monitoring of microplastics in our oceans depths.
nanoIR3-s Broadband Nanoscale FTIR Spectroscopy
The system combines the industry-leading Anasys nanoIR3-s platform with the latest OPO/DFG femtosecond laser technology, resulting in unmatched levels of performance.
Chemical Characterization of Polymeric Films, Blends, and Self-Assembled Monomers v2
This application note discusses and provides examples of the use of AFM-IR to address nanoscale chemical characterization on a range of polymeric and thin film samples.
Working towards clean energy
In order to make combustion more efficient without major greenhouse gas emissions, quantum cascade lasers are used in a setup to study ignition delay times.
Determination of Elemental Impurities in Graphite-based Anodes using the Agilent ICP-OES
A Novel Approach to Analysis of In-Service Lubricants
PerkinElmer’s LPC 500™-Avio® 550 Max ICP-OES integrated solution enables the same diluted sample to be analyzed for multi-element determination and particle count in a single run.
Analysis of In-Service Coolants Following ASTM D6130
Monitor additive levels, corrosion metals, and contaminants in accordance with ASTM D6130. PerkinElmer’s Avio® 550 Max ICP-OES provides accurate multi-element determination and more.
Direct Analysis of Ethanol for Several Metals
PerkinElmer's Avio® 550 Max ICP-OES accurately measures low levels of phosphorus, sulfur, copper, and iron in accordance with European Standard IP 581.
Rapid Water Analysis using High-Throughput ICP-OES
PerkinElmer's Avio® 560 Max ICP-OES performs rapid 60-second sample-to-sample analysis per EPA Method 200.7, thanks to its fully simultaneous capabilities and built-in HTS.