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1-12 of 26 Business Insights

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  • Brochure

    QSight Pesticides Analyzer Brochure

    Pesticides can adversely affect human health through the food we consume but can also leach into soil and groundwater and impact us through the environment. To keep up with a complex and constantly changing regulatory environment, your pesticide analysis solution needs to keep up with your burgeoning sample load.

  • Application Note

    Testing and Validation of Various Antacids for Elemental Impurities using the NexION 2000 ICP-MS

    The United States Pharmacopeia (USP) has announced that its new standards for elemental impurities in drug products has been implemented since January 1, 2018. General Chapters <232> and <2232> specify the list of elements and their permissible daily exposure (PDE) limits based on the route of administration.

  • Application Note

    Identification of VOCs in In-Vehicle Interior

    Customer complaints of odors within a new car are rising with the increasing number of new car buyers. Although odors can be subjective, it is now well known that the new car smell is the result of chemicals emitted from the in-vehicle interior components such as the dashboard, interior panels, seat coverings, flooring materials, and so on. This application note describes a method for the automotive industry that provides a qualitative analysis and the olfactory character of each component using the TD-GC/MS-Olfactory Port.

  • Application Note

    Determination of Volatile Organic Compounds (VOCs) in Wallpapers Using ATD-GCMS

    Wallpaper is widely used throughout the world as an interior design choice that offers bright colors, rich designs and durability, all at an affordable price. Vinyl wallpaper has emerged as an especially durable choice over paper and non-woven varieties of wallpaper, however, its manufacturing poses many environmental concerns. When manufacturing wallpaper, a large amount of organic solvent is utilized in the treatment and printing processes. As a result, high levels of volatile organic compounds (VOCs) can be present in the product, which pose an inhalation risk to humans. To identify potential levels of VOCs in wallpaper samples, a method was undertaken, targeting 35 volatile organic compounds using a PerkinElmer TurboMatrix™ 650 ATD and PerkinElmer Clarus® SQ8 GC/MS, with results and methodology introduced in this study.

  • Application Note

    Analysis of Single-Walled Carbon Nanotubes with SP-ICP-MS

    Measuring the amount of metals in CNTs presents a challenge. High levels can be measured directly in the solid by several techniques, including XRF and TEM, while low-level analysis requires complete digestion of the sample prior to analysis by ICP-OES or ICP-MS.

  • Application Note

    Analysis of Cerium Dioxide Nanoparticles in Soil Using Single Particle ICP-MS

    This work demonstrates a robust method using SP-ICP-MS technology to detect CeO2 NPs which were extracted from soil samples with tetrasodium pyrophosphate (TSPP). Over the past few decades, engineered nanoparticles (ENPs) have been increasingly used in many commercial products. As a result, more and more ENPs have been released into the environment, which raises concerns over their fate, toxicity and transport therein.

  • Application Note

    Determination of Volatile Organic Compounds in Soils

    Volatile organic compounds (VOCs) are a series of compounds with boiling points from 50 to 250 degrees centigrade and are widely used as industrial chemicals/ solvents. Low concentrations of VOCs can have a significant impact on human health, as many are regarded as highly toxic, refractory and carcinogenic. The detection and determination of VOCs in the environment is of the upmost importance for both human and environmental health.

  • Application Note

    Method 8260C by Purge and Trap Gas Chromatography Mass Spectrometry using the Clarus SQ 8

    This method outlines the analysis of volatile organic compounds in a variety of solid waste matrices including various air sampling trapping media, ground and surface water, soils, and sediments among others. The method requires not only demonstration of laboratory sample preparation and handling competence but instrument performance as well. The study presented here demonstrates the PerkinElmer® Clarus® SQ 8 GC/MS with purge and trap sample introduction both meets and exceeds the performance criteria set out in method 8260C and describes the analytical results and instrumental methodology.

  • Application Note

    New Research Evaluating Cisplatin Uptake in Ovarian Cancer Cells by Single Cell ICP-MS

    Cisplatin, carboplatin, and oxaliplatin are the most widely used of platinum-based cancer chemotherapy drugs in the Western world. Cisplatin's effectiveness is due to its ability to bind to the DNA, resulting in DNA-platinum (Pt) adducts, which bend the DNA. The cells must then repair the DNA damage, otherwise DNA replication is blocked resulting in cell death. Many cancers are initially sensitive to platinum-based treatment, but patients frequently relapse with tumors displaying resistance to further cisplatin therapy.

  • Application Note

    Characterization of TiO2 Nanoparticle Release from Fabrics By Single Particle ICP-MS

    In the textile industry, the use of titanium dioxide (TiO2) nanoparticles (NPs) is increasing due to their ability to provide UV protection, increase the hydrophilic nature of fabrics, provide antibacterial characteristics, and reduce odors. This work studies the release of TiO2 NPs from various commercial textile products which do not advertise that TiO2 NPs have been added.

  • Application Note

    Transport of Nanoparticles From Coated Surfaces Through Physical Contact

    This work investigated the transfer of Ag and CuO nanoparticles from consumer products via simulated dermal contact by using textile wipes as a surrogate using PerkinElmer’s NexION ICP-MS single particle analyzer with the unique Syngistix Nano Application software module for data collection and analysis

  • Application Note

    Accurate Sizing and Precise Counting of 10 nm Gold Nanoparticles using the NexION 2000 ICP-MS

    In this work, we demonstrate that PerkinElmer's NexION® 2000 ICP-MS, with its unique RF generator and ion optics, coupled with the Syngistix™ Nano Application Software Module, can be used to accurately measure and characterize NP sizes of 10 nm and smaller, both alone and in a mixture of NPs of various sizes.

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1-12 of 77 Products & Services

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  • NexION 2000 ICP-MS

    NexION 2000 ICP Mass Spectrometer

    PerkinElmer’s NexION® 2000 is the most versatile ICP-MS on the market, featuring an array of unique technologies that combine to deliver the highest performance no matter what your analytical challenge. Discover the effortless versatility of an instrument that makes it easy to handle any sample matrix, any interference, and any particle size.

    PerkinElmer received on April 11, 2018 the Application Award from LaborPraxis in the category Bio and Pharma Analysis for the NexION 2000 ICP-MS. We were awarded this prize during analytica 2018 in Munich, Germany, in acknowledgment of a new technique enabling users to quantify the amount of metal in an individual cell for the first time.
  • QSight Triple Quad LC-MS

    QSight Triple Quad LC/MS/MS

    Ideal for analyzing food, cannabis, and environmental samples, our robust and reliable QSight® triple quad systems consistently deliver the throughput and productivity you need in your analytical testing lab. Now we’ve added the premier model to our QSight family: the high performance 400 series. This ready-to-implement solution has the highest sensitivity and throughput the industry has ever seen and the capability to test for the most challenging, complex samples, including cannabis.
  • Flexar LC

    Flexar LC

    Meet the HPLC system you can count on day after day. For routine analyses, it simply streamlines your processes with easy, trouble-free operation while delivering reliable results every time.
  • QSight Triple Quad LC-MS

    QSight Pesticide Analyzer

    Built to run hundreds of pesticides in one run, with the utmost sensitivity and efficiency, the QSight Pesticide Analyzer is the only instrument that provides 15% higher throughput than conventional systems.

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    Quasar™ AQ LC Column

    Quasar AQ LC columns benefit from no phase collapse even in 100% aqueous mobile phase conditions and the polar end capping aids in retention of more polar compounds.
  • PerkinElmer

    Quasar™ SPP Biphenyl LC Column

    Quasar SPP Biphenyl LC columns ultilise a Biphenyl bonded phase, provides π-π interactions to facilitate alternative selectivity, and no MS bleed is observed.
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    Quasar™ Biphenyl LC Column

    Quasar Biphenyl LC columns ultilise a biphenyl bonded phase which provides π-π interactions to facilitate alternative selectivity compared to alkyl bonded phases.
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    Quasar™ Biphenyl LC Column

    Quasar Biphenyl LC columns ultilise a biphenyl bonded phase which provides π-π interactions to facilitate alternative selectivity compared to alkyl bonded phases.
  • MV_kit_700x700

    100 mm, 3.0 mm I.D., 2.6 µm Quasar™ Method Validation Kit

    This method validation kit includes 3 HPLC Quasar SPP C18 100 mm, 3.0 mm I.D., 2.6 µm columns from three different batches.
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    Quasar™ SPP C18 LC Column

    HILIC Quasar SPP HILIC LC columns encompass a uniform surface for improved reproducibility and yield excellent peak shapes for a wide range of compounds, including basic analytes.
  • 50x4_6mm_angle_700x700

    Quasar™ Biphenyl LC Column

    Quasar Biphenyl LC columns ultilise a biphenyl bonded phase which provides π-π interactions to facilitate alternative selectivity compared to alkyl bonded phases.
  • 50x4_6mm_angle_700x700

    Quasar™ HILIC LC Column

    Quasar HILIC LC columns benefit from a bonded diol phase for more reproducible HILIC separations. Lower water content mobile phases can be routinely used which offers increased MS sensitivity.
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