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MS analysis device - メーカー・企業5社の製品一覧とランキング

更新日: 集計期間:Sep 03, 2025~Sep 30, 2025
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MS analysis deviceのメーカー・企業ランキング

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  1. サーモフィッシャーサイエンティフィック株式会社/Thermo Fisher Scientific K.K. Tokyo//Testing, Analysis and Measurement
  2. 一般財団法人材料科学技術振興財団 MST Tokyo//Testing, Analysis and Measurement
  3. アイテス Shiga//Electronic Components and Semiconductors
  4. 4 Kyoritsu Electric Corporation Shizuoka//Industrial Electrical Equipment
  5. 5 分析センター 第一技術研究所 Tokyo//Testing, Analysis and Measurement

MS analysis deviceの製品ランキング

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  1. Solid Nebulizer and iCAP Qnova Series ICP-MS サーモフィッシャーサイエンティフィック株式会社/Thermo Fisher Scientific K.K.
  2. [Analysis Case] LC/MS/MS Analysis of Vitamin C 一般財団法人材料科学技術振興財団 MST
  3. [Analysis Case] Ginseng - LC/MS/MS Analysis of Herbal Components 一般財団法人材料科学技術振興財団 MST
  4. Agilent 7850 ICP-MS Kyoritsu Electric Corporation
  5. 5 Data: Outgassing analysis using headspace GC-MS analysis method. アイテス

MS analysis deviceの製品一覧

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[Information] Liquid Crystal Materials and Their Analytical Techniques

Easily explain the technical capabilities of Aites by analyzing molecular structures with diagrams and tables!

This document introduces an example of analytical methods for molecular structure analysis. It includes structural analysis using IR and Raman for liquid crystal polymers (LCP), TIC data from GC-MS analysis of low molecular weight liquid crystals (for LCD), and detected substances, along with figures and tables. For analysis at the quantum level, please consult the technical group "Aites," which has extensive expertise. [Contents (excerpt)] ■ Liquid Crystal Polymers (LCP) ■ Structural analysis of LCP (fully aromatic polyamide) ■ Structural analysis using IR ■ Structural analysis using Raman ■ Structural analysis using XPS (ESCA) *For more details, please refer to the PDF document or feel free to contact us.

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  • Structural Analysis

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[Information] GC-MS Analysis Device Guide

Introducing the sample introduction device and the types of analytical samples and analysis content that each device specializes in!

GC-MS analysis is a method commonly used for the analysis of organic components and organic structure analysis. With auxiliary devices, it is capable of a wide range of analyses, from low molecular substances like solvents to high molecular substances like plastics. In this document, we will introduce the sample introduction devices owned by Aites, as well as the types of analysis samples and analysis content that each device specializes in. We invite you to read it. 【Contents】 ■ Overview ■ Conditions ■ Samples ■ Data Obtained ■ Analysis Examples *For more details, please refer to the PDF document or feel free to contact us.

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  • Analytical Equipment and Devices

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[Analysis Case] Composition Analysis of Sheet-Like Active Material for Lithium-Ion Secondary Batteries

Quantitative analysis of the main components of sheet-like active substances is possible.

Lithium-ion secondary batteries have excellent characteristics among secondary batteries, but there are various challenges in their development, such as increasing output, capacity, and lifespan. This time, we will introduce a case where the composition of sheet-like active materials for the positive electrode was evaluated with high precision using ICP-MS analysis.

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[Analysis Case] LC/MS/MS Analysis of Vitamin C

Simultaneous analysis of D, L-ascorbic acid and dehydroascorbic acid.

The vitamin C contained in food refers to the total amount of reduced L-ascorbic acid and oxidized dehydroascorbic acid. Its applications include not only nutritional enhancement but also use as an antioxidant. When measuring vitamin C using HPLC, it is common to convert the oxidized form after noting that dehydroascorbic acid has no UV absorption, and then derivatize it for measurement. By quantifying dehydroascorbic acid using LC/MS/MS, it becomes possible to simplify the pretreatment and analyze with high sensitivity.

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[Analysis Case] Evaluation of Blood Lithium Concentration

It can be analyzed over a wide range from low concentrations to toxic levels.

Lithium carbonate, widely used in the treatment of mania and bipolar disorder, must be administered while maintaining an appropriate blood concentration to prevent lithium toxicity. Therefore, regular measurement of blood concentration (therapeutic drug monitoring: TDM) is required. Analysis using ICP-MS (inductively coupled plasma mass spectrometry) allows for the quantification of lithium concentrations in the blood across a wide range, from subtherapeutic levels to toxic levels.

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  • Contract Analysis

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Agilent 7850 ICP-MS

Achieve an efficient workflow! Productivity increases, and the reliability of analysis results improves.

The "Agilent 7850 ICP-MS" can detect a wide dynamic range from trace levels to high concentrations. It allows for easy setup of conditions for high matrix samples and complex applications. This not only smooths daily operations but also improves productivity and enhances the reliability of analytical results. Additionally, the ICP-MS MassHunter software is optimized for routine workflows, enabling quick mastery of new equipment. 【Features】 ■ Smartly reduce time wastage in ICP-MS analysis ■ Quickly learn new equipment ■ User-friendly, simple interface ■ Reduce the effort of method development and documentation ■ Simplify sample pretreatment *For more details, please refer to the PDF materials or feel free to contact us.

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Solid Nebulizer and iCAP Qnova Series ICP-MS

We will revolutionize the common knowledge of ICP-MS analysis.

The Jupiter Solid Nebulizer is a solid direct analysis system that uses a galvanolaser optical system. When used in conjunction with the robust Thermo Scientific iCAP Qnova series ICP-MS, it enables analyses that were previously impossible. **Analyses Achieved by Jupiter Solid Nebulizer ICP-MS** - Direct ICP-MS analysis of solid samples - Unique high-speed multi-point ablation allows direct application of quantitative methods such as standard addition to solid samples - Eliminates weighing errors and contamination during traditional dissolution processes, as well as solvent-related interferences during measurement, resulting in higher precision - Capable of analyzing difficult-to-dissolve and insoluble materials - Eliminates the need for acids and organic solvents, improving operator safety and reducing environmental impact and costs - Quantitative imaging of trace elements - Enables 2D/3D imaging of trace elements that are difficult to detect with surface analysis devices, utilizing the high sensitivity and quantitative accuracy of ICP-MS - Unique software features allow imaging based on quantitative concentrations - No need for standard samples with the same composition as the sample - Rapid analysis of extensive areas up to several square centimeters and depths of several hundred micrometers *You can view analysis examples of this product by clicking the link below "Application for Analysis Data Collection."*

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  • Analytical Equipment and Devices

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Data: Outgassing analysis using headspace GC-MS analysis method.

Publication of headspace GC-MS analysis method and case study of outgassing component analysis of liquid crystal panel polarizers!

If solvents, low molecular organic substances, or unreacted materials remain in the constituent materials, packaging materials, or cushioning materials of a product, they may outgas, diffuse, or permeate into the constituent materials, potentially affecting the product's lifespan, characteristics, and the environment or human health. The headspace method of GCMS is effective for qualitative and quantitative analysis of trace residual substances. This document presents a case study of the qualitative analysis of outgassing components from polarizers used in liquid crystal panels. We encourage you to read it. [Contents] ■ Headspace GC-MS analysis method ■ Analysis of outgassing components from polarizers in liquid crystal panels *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Analysis of Polycarbonate Degradation by Reaction Thermal Decomposition

For material evaluation and defect analysis! We will discuss the applied load and degradation mechanisms based on the differences in decomposition products.

Polycarbonate is a material that excels in impact resistance, weather resistance, and transparency, making it widely used in everything from industrial materials to everyday products. However, even polymers with excellent properties can undergo chemical changes, commonly referred to as degradation, due to the usage environment and the passage of time. This document presents examples of degradation analysis of polycarbonate materials subjected to UV irradiation and constant temperature and humidity testing. [Contents] ■ Thermal decomposition GC-MS analysis of polycarbonate *For more details, please refer to the PDF document or feel free to contact us.*

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[Analysis Case] LC/MS Analysis of Ergothioneine

Evaluation of the yield and purification level of amino acids derived from natural sources.

Ergothioneine, an amino acid homologue found abundantly in edible mushrooms of the Pleurotaceae family, is gaining attention in the fields of food, medicine, and beauty as a natural substance with high antioxidant properties. Recently, chemical synthesis techniques have also been established, but there is still a need for the development of high-efficiency separation and purification techniques from natural food resources, and it is required to accurately measure the yield and evaluate the level of purification.

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[Analysis Case] Concentration Analysis of Harmful Components in Food

Evaluation of melamine concentration in infant formula milk powder

The large-scale pet food recall incident in 2007 and the melamine-contaminated milk powder incident in 2008 led to the detection of melamine in dairy products, livestock feed, and other foods, prompting nationwide measures to address the issue. MST has established a method for extracting and recovering melamine from food with high precision, and quantifying it using LC/MS/MS analysis. Below are the LC/MS/MS analysis results. We hope this helps alleviate your concerns about food safety.

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  • Contract Analysis

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[Analysis Case] Ginseng - LC/MS/MS Analysis of Herbal Components

Simultaneous analysis of six types of ginsenosides (Rb1, Rc, Rd, Re, Rg1, Rg3)

The main component of Korean ginseng, which is widely used as a herbal medicine, is a saponin called ginsenoside. Ginsenosides are classified based on the way sugars are attached, and currently, about 30 types have been discovered. In this case, we will introduce an example of analyzing ginsenosides using LC/MS/MS. With LC/MS/MS, we confirmed that the double filtering effect of MRM allows for the separation of peaks from six structurally similar compounds, enabling simultaneous qualitative and quantitative analysis.

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[Analysis Case] LC/MS/MS Analysis of Catechin Metabolites in Urine

Qualitative analysis of catechin metabolites in urine, as well as investigation of temporal changes and individual differences.

By using high-sensitivity LC-MS (Q-TOF type), qualitative analysis of low-concentration components such as metabolites in biological samples is possible. It allows for the search for components that have undergone metabolism such as addition or conjugation in the body, as well as inter-sample comparisons aimed at investigating temporal changes and individual differences. After consuming a high-concentration catechin beverage and collecting urine, both unchanged catechin and the metabolite catechin-glucuronide conjugate were confirmed. The amounts of catechin and metabolites in the urine of eight individuals were plotted for excretion over 0.5 to 8 hours post-consumption, and comparisons were made.

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[Information] Introduction to Pyrolysis GC-MS Analysis <Part 2>

Useful for evaluating small amounts of adhesive! Also explains cases of adhesive curing failure investigation.

This document introduces pyrolysis GC-MS analysis. Adhesives are used in various manufacturing processes, and their types vary widely depending on the materials being bonded, the environment, and the intended purpose. On the other hand, specific issues related to adhesives, such as poor adhesion, insufficient curing, and bleeding, can also be observed. Component analysis is effective for solving these problems, but when the amount used is small, the simplest IR analysis may not yield results. Py-GC-MS can provide useful information for identifying causes even with minute samples as small as the tip of a needle. For more details, please refer to the document. [Contents] ■ Introduction to pyrolysis GC-MS analysis ■ Case studies on poor curing of adhesives *For more information, please refer to the PDF document or feel free to contact us.

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