Hamburger Menu Button
Thermo Fisher Scientific Logo
登入
還沒有帳戶嗎 ? 立即註冊
  • 產品
    • Antibodies
    • Oligos, Primers, Probes and Genes
    • TaqMan Real-Time PCR Assays
    • Cell Culture Media
    • Chemicals
    • Western Blot Products
    • Chromatography Columns and Cartridges
    • Lab Equipment
    • Lab Plasticware and Supplies
    • Microplates
    • Greener Products
    • 查看所有產品類別
  • 應用
    • 生物製程
    • 細胞培養和轉染
    • 食品和飲料
    • 實驗室解決方案
    • 製藥和生物製藥
    • 即時定量PCR
    • 半導體分析
    • 臨床和診斷
    • 數位解決方案
    • 分子光譜、同位素與元素分析
    • 查看所有應用與技術
  • 服務
    • 360° CDMO 和 CRO 服務
    • CDMO 服务
    • 临床试验 CRO 服务
    • 客製化服務
    • 企業服務
    • 金融與租賃服務
    • 儀器服務
    • 實驗室資訊學
    • 授權與商業供應
    • 培訓服務
    • 查看所有服務
  • 支援
    • 線上訂購協助
    • 數位解決方案
    • 產品支持
    • 技術相關資訊
    • 培訓與教育
    • 查看所有協助與支援
  • 熱門商品
    • TaqMan Real-Time PCR Assays
      TaqMan Real-Time PCR Assays
    • Antibodies
      Antibodies
    • Oligos, Primers & Probes
      Oligos, Primers & Probes
    • GeneArt Gene Synthesis
      GeneArt Gene Synthesis
    • Cell Culture Plastics
      Cell Culture Plastics
  • 特價商品
  • 聯絡我們
  • 快速訂購
  • 訂單狀態與貨物追蹤
  • 文件和證書
Thermo Fisher Scientific Logo

Search

Search All
Search button
          • 訂單查詢
          • 快速訂購
          • 登入
            登入
            還沒有帳戶嗎 ? 立即註冊
            • 帳戶
            • 訂單
            • Connect: Lab, Data, Apps
            • 客製化產品與項目
            • 儀器管理

          Learn how Routine Laboratories Can Benefit from Triple Quadrupole ICP-MS Technology

          • Overview
          • About the presenters

          Triple quadrupole ICP-MS instruments have helped to take the analysis of trace elements to a new level, delivering better interference removal and significantly improved detection limits for key analytes, such as phosphorous, arsenic, or selenium. Because of this, these instruments can help to overcome a variety of typical challenges routine laboratories face. For example, the ability to remove additional interferences, such as doubly charged interferences, increases the confidence in data quality and helps to reduce time consuming and labor intensive re-runs or post-analysis data treatment.

          Triple quadrupole instruments use reactive cell gases such as oxygen or ammonia to remove interferences based on different chemical reactivity. However, in comparison to single quadrupole ICP-MS systems, the technique is often perceived as difficult to set up especially for non-expert users such as lab managers coming from a different technological background or laboratory technicians.

          Modern triple quadrupole ICP-MS instruments will easily help you to overcome initial difficulties with method setup based on straightforward design and intuitive software, allowing all laboratories and all staff levels to access the full potential of this technique.

          This webcast will show you how the triple-quadrupole ICP-MS instruments can help to solve the above-mentioned challenges. The presentation will feature key examples from leading industry laboratories on how triple quadrupole ICP-MS has helped them to solve or improve on their challenges with trace elemental analysis.

          Key learning objectives

          In this webcast, you will:

          • Learn why expert laboratories in the chemical industry apply triple quadrupole ICP-MS systems for their work in order to get more accurate results
          • Get to know the key benefits of triple quadrupole ICP-MS and how it removes all potential interferences
          • Discover how easy it is using modern software tools to integrate improved technology for sampling and analysis into your laboratory and reach another level of analytical possibilities
          • Find out how your laboratory will benefit from upgrading to triple quadrupole ICP-MS routine analysis with no obstacles for your operators

          Dr. Daniel Kutscher, Product Marketing Specialist, Thermo Fisher Scientific

          Daniel earned a degree in Chemistry at the University of Mainz, Germany, in 2007. Following that, Daniel joined the Analytical Spectrometry Group at the University of Oviedo, Spain, where he obtained his PhD in 2011. His main research interest in that time was the use of elemental labelling of proteins and peptides to explore new technologies based on elemental mass spectrometry for their accurate quantification.

          Daniel joined Thermo Fisher Scientific in 2011 as a Product Specialist for ICP-MS focusing on hyphenated techniques, such as IC-ICP-MS, and finding solutions for the high-throughput analysis of challenging sample types. In 2018, became a Product Marketing Specialist.

          Kerstin Vogel, Research Scientist, The Dow Chemical Company

          Kerstin received her M.S. and B.S. in Marine Environmental Science and Geo Chemistry from University of Oldenburg in 2001, Germany. Following that, Kerstin joined the Geochemistry Group at the University of Bremen, Germany. Her main research interest in that time was the investigation of elemental distribution patterns in marine sediments off NW Africa as indicators for climatic changes in the past. The project included the participation on two research vessel (METEOR) cruises.

          Kerstin joined Dow in 2005 as a Subject Matter Expert in Analytical Chemistry (ICP, Atomic Adsorption, Elemental Analysis and Ion Chromatography). She focusses on the usage of ICP-OES and –MS for challenging sample matrices and hyphenated techniques such as SEC-ICP-OES/MS and developing new methods in these fields of applications. In 2018, she became Research Scientist in Core R&D Analytical Science.

          Adrian Seaton, ICP-MS Technical Specialist, Johnson Matthey

          Adrian earned a degree in Chemistry at Coventry University, England in 1992, which encompassed a year in industry working in the detergent industry. After university his first full-time employment was with a fertilizer company analyzing fertilizer using ICP-OES and colorimetric techniques. He joined Johnson Matthey in 1997 as Shift Analyst analyzing base metal sponges and compounds, precious metal sponges and compounds and rare earth oxides using emission spectrographic techniques, ICP-OES, atomic absorption spectrometry and x-ray fluorescence. Adrian began using in ICP-MS in 2001. In 2010, became an ICP-MS Technical Specialist.

          Overview

          Triple quadrupole ICP-MS instruments have helped to take the analysis of trace elements to a new level, delivering better interference removal and significantly improved detection limits for key analytes, such as phosphorous, arsenic, or selenium. Because of this, these instruments can help to overcome a variety of typical challenges routine laboratories face. For example, the ability to remove additional interferences, such as doubly charged interferences, increases the confidence in data quality and helps to reduce time consuming and labor intensive re-runs or post-analysis data treatment.

          Triple quadrupole instruments use reactive cell gases such as oxygen or ammonia to remove interferences based on different chemical reactivity. However, in comparison to single quadrupole ICP-MS systems, the technique is often perceived as difficult to set up especially for non-expert users such as lab managers coming from a different technological background or laboratory technicians.

          Modern triple quadrupole ICP-MS instruments will easily help you to overcome initial difficulties with method setup based on straightforward design and intuitive software, allowing all laboratories and all staff levels to access the full potential of this technique.

          This webcast will show you how the triple-quadrupole ICP-MS instruments can help to solve the above-mentioned challenges. The presentation will feature key examples from leading industry laboratories on how triple quadrupole ICP-MS has helped them to solve or improve on their challenges with trace elemental analysis.

          Key learning objectives

          In this webcast, you will:

          • Learn why expert laboratories in the chemical industry apply triple quadrupole ICP-MS systems for their work in order to get more accurate results
          • Get to know the key benefits of triple quadrupole ICP-MS and how it removes all potential interferences
          • Discover how easy it is using modern software tools to integrate improved technology for sampling and analysis into your laboratory and reach another level of analytical possibilities
          • Find out how your laboratory will benefit from upgrading to triple quadrupole ICP-MS routine analysis with no obstacles for your operators
          About the presenters

          Dr. Daniel Kutscher, Product Marketing Specialist, Thermo Fisher Scientific

          Daniel earned a degree in Chemistry at the University of Mainz, Germany, in 2007. Following that, Daniel joined the Analytical Spectrometry Group at the University of Oviedo, Spain, where he obtained his PhD in 2011. His main research interest in that time was the use of elemental labelling of proteins and peptides to explore new technologies based on elemental mass spectrometry for their accurate quantification.

          Daniel joined Thermo Fisher Scientific in 2011 as a Product Specialist for ICP-MS focusing on hyphenated techniques, such as IC-ICP-MS, and finding solutions for the high-throughput analysis of challenging sample types. In 2018, became a Product Marketing Specialist.

          Kerstin Vogel, Research Scientist, The Dow Chemical Company

          Kerstin received her M.S. and B.S. in Marine Environmental Science and Geo Chemistry from University of Oldenburg in 2001, Germany. Following that, Kerstin joined the Geochemistry Group at the University of Bremen, Germany. Her main research interest in that time was the investigation of elemental distribution patterns in marine sediments off NW Africa as indicators for climatic changes in the past. The project included the participation on two research vessel (METEOR) cruises.

          Kerstin joined Dow in 2005 as a Subject Matter Expert in Analytical Chemistry (ICP, Atomic Adsorption, Elemental Analysis and Ion Chromatography). She focusses on the usage of ICP-OES and –MS for challenging sample matrices and hyphenated techniques such as SEC-ICP-OES/MS and developing new methods in these fields of applications. In 2018, she became Research Scientist in Core R&D Analytical Science.

          Adrian Seaton, ICP-MS Technical Specialist, Johnson Matthey

          Adrian earned a degree in Chemistry at Coventry University, England in 1992, which encompassed a year in industry working in the detergent industry. After university his first full-time employment was with a fertilizer company analyzing fertilizer using ICP-OES and colorimetric techniques. He joined Johnson Matthey in 1997 as Shift Analyst analyzing base metal sponges and compounds, precious metal sponges and compounds and rare earth oxides using emission spectrographic techniques, ICP-OES, atomic absorption spectrometry and x-ray fluorescence. Adrian began using in ICP-MS in 2001. In 2010, became an ICP-MS Technical Specialist.

          Register to view the free
          on-demand webinar

          * Required field

          *
          *
          *
          *
          *
          *
           
          *
          *
          *
          *

           I would like to speak with an expert to learn how Thermo Fisher Scientific products can help in my laboratory
           Please confirm you would like to receive marketing and promotional email messages about Thermo Fisher Scientific products and services.

          本網站受 reCAPTCHA 保護,且適用 Google 隱私權政策及服務條款。

           
           
          產品訂購 Plus Icon Minus Icon
          • 訂單狀態
          • 訂購協助
          • 快速訂購
          • 現貨供應中心
          • 電子採購
          支持 Plus Icon Minus Icon
          • 協助與支持
          • 聯絡我們
          • 技術支持中心
          • 搜尋文件和證書
          • 回報網站問題
          資源 Plus Icon Minus Icon
          • 學習中心
          • 促銷活動
          • 活動和網路研討會
          • 社群媒體
          關於 Thermo Fisher Plus Icon Minus Icon
          • 關於我們 關於我們
          • 人才招募 人才招募
          • 投資者資訊 投資者資訊
          • 新聞 新聞
          • 企業社會責任 企業社會責任
          • 商標
          • 政策和聲明
          品牌 Plus Icon Minus Icon
          • Thermo Scientific
          • Applied Biosystems
          • Invitrogen
          • Gibco
          • Ion Torrent
          • Fisher Scientific
          • Patheon
          • PPD
          • Terms & Conditions
          • Privacy Policy
          • Price & Freight Policy
          © 2006-2026 Thermo Fisher Scientific Inc. All rights reserved. All trademarks are the property of Thermo Fisher Scientific and its subsidiaries unless otherwise specified.
          Taiwan flag icon
          Taiwan