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Polymer Analysis Using the New Multi Sample Discovery X3 DSC

  Overview Polymeric materials, both thermoplastics and thermosets, have long been studied by differential scanning calorimetry (DSC). Cure properties, crystallization behavior, and glass transition temperatures are just a few of the material characteristics investigated by this versatile thermal technique. In many instances, the comparison of these material properties from samples that have a different production…

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Thermal, Rheological and Mechanical Characterizations of Thermosets

  Overview Thermosetting materials, such as epoxy, have been widely applied in many areas including automotive, aerospace and electronics industries in the form of surface coating, structural adhesives, advanced composites and packaging materials. These kind of materials pose high mechanical strength, high temperature stability and good solvent resistance. Unlike thermoplastic polymers, the process of thermosets…

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Pharmaceutical Characterization with the New Multi Sample Discovery X3 DSC

  Overview Differential Scanning Calorimetry is a simple yet powerful technique for gaining a broad understanding of the characteristics of pharmaceutical materials. Many of the properties that are explored using DSC, including apparent melting, the glass transition, and purity, are critical towards understanding the impact of processing conditions as well as the stability and compatibility…

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Discover the Possibilities with the New Multi-Sample Discovery X3 Differential Scanning Calorimeter

  Overview Differential scanning calorimeters (DSCs) are standard instruments used in both materials research and development and quality control laboratories. Demand for high-quality DSC data continues to increase rapidly throughout many industries. The development of new materials typically requires extensive testing with the objective of understanding the material structure-property relationship and its dependence on material…

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Hyphenation of Thermogravimetric Analyzers with FTIR, MS, and GC-MS Instruments

  Overview Thermogravimetric Analysis, or TGA, is a powerful analytical tool for measuring changes in a sample’s mass as its environmental temperature shifts. When coupled with other instrumental techniques such as mass spectrometers and infrared spectrometers, chemical analysis of the evolved gases is achieved. These hyphenated techniques have a long history in thermal analysis.…

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Advanced Characterization of Antibody-Drug Conjugates and Antibody-Fusion Proteins

Overview: Antibodies are the most rapidly growing form of therapeutic. High-throughput methods of characterization are essential as companies and researchers move to develop new candidates. In this webinar, Dr. Shawn Owen discusses advanced characterization techniques to assess antibody-drug conjugates (ADCs) and antibody-fusion proteins. For ADCs, the level of payload and site of conjugation are determined…

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Benefits of Microscopy for Interpretation of DSC Thermograms

Benefits of Microscopy for Interpretation of DSC Thermograms DSC thermograms can be complicated and difficult to interpret, sometimes requiring multiple experiments in order to better understand a thermal event. The NEW Microscope Accessory for the Discovery DSC helps to eliminate these issues by allowing the user to easily view the sample while the DSC experiment…

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DSC Characterization of Crystalline Structure in Foods and Pharmaceuticals

DSC Characterization of Crystalline Structure in Foods and Pharmaceuticals Differential Scanning Calorimetry (DSC) is an analytical technique frequently used to detect and quantify crystalline content of pharmaceuticals, foods, polymers, and many other materials. Appearing as an endothermic peak during heating in a DSC experiment, the temperature and area of the peak can be used to…

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Designing New Materials for Additive Manufacturing: Vat Photopolymerization

Designing New Materials for Additive Manufacturing: Vat Photopolymerization Overview 3D printing, or additive manufacturing (AM), provides opportunities to create previously unattainable geometric objects through layer-by-layer fabrication. Novel macromolecular structures and synthetic methods coupled with unique printing methods lead to 3D part generation with micron-scale resolution and tunable to emerging technologies. By tuning polymer structure, printing…

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Kadine Mohomed – Characterization of Amorphous Pharmaceuticals by DSC Analysis

Kadine Mohomed – Characterization of Amorphous Pharmaceuticals by DSC Analysis The glass transition temperature of an amorphous pharmaceutical solid is a critical physical property that can greatly influence the material’s chemical stability, physical stability, and viscoelastic properties. Thankfully with specific analytical tests made possible through the use of Differential Scanning Calorimetry, this and other thermal…

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