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Unlock a New Dimension in your Battery Research Through Isothermal Microcalorimetry

  Overview In order to meet growing market demands for power storage, Lithium ion and new battery chemistries demand higher energy density, longer cycle life, calendar life, and better safety to a lower cost. Isothermal microcalorimetry is a highly sensitive, non-destructive and non-specific tool to characterize these critical performance criteria. Learn how this method provides:…

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Understanding Storage and Loss Modulus with TA Instruments

In the world of material science, understanding the viscoelastic properties of materials is crucial for developing and optimizing products. Two key parameters in this context are storage modulus (E’ or G’) and loss modulus (E” or G”). These parameters provide insights into a material’s stiffness and damping characteristics, respectively, which are essential for applications ranging from polymers and pharmaceuticals to batteries and composites.

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Understanding Biopolymer Behavior

The drive for consumers, brand owners, and corporations to become more eco-conscious in their purchases has led to an increased demand in sustainably sourced materials. Several industries have started initiatives to incorporate the use of recycled materials as well as bio-derived materials. In the case of bio-derived materials, industries using polymers have interest in biopolymers; however, these materials come with unique challenges.

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Understanding Binding Interaction Workflow Solutions: Save Time and Material

Understanding Binding Interaction Workflow Solutions: Save Time and Material Part 1 In drug discovery, selection of compound hits with a potential for further development requires a full characterization of binding kinetics. Biophysical techniques such as isothermal titration calorimetry (ITC) and Grating-Coupled Interferometry (GCI) provide information on the global binding mechanisms of protein-protein or protein-ligand interaction, essential…

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