Industry Application eBooks
Battery Application eBook
Explore how Rigaku’s X-ray and complementary analytical solutions accelerate battery R&D and manufacturing. Inside you’ll find technique primers, workflows, and case studies covering cathode/anode characterization, phase ID and quantification, particle size and morphology, coating uniformity, failure analysis, and in-line QC. Includes overviews of XRD, XRF, CT, SAXS, and XES with example data to help improve performance, safety, and yield.
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Pharmaceutical Application eBook
Rigaku’s Pharmaceutical Application eBook is a practical collection of real-world workflows and case studies across drug discovery, development, and manufacturing. See how XRD, single-crystal diffraction, thermal analysis, Raman (1064 nm), and micro-CT tackle polymorphism, API stability, raw-material ID, and coating/porosity control. Includes instrument setups, data examples, and concise conclusions to help you choose methods, cut rework, and accelerate decisions.
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Polymer Application eBook
The Polymer Application eBook showcases how Rigaku technologies support every stage of polymer production, from raw materials and molding to end products and recycling. It presents real-world case studies using XRD, XRF, CT, and thermal analysis to evaluate structure, composition, defects, and thermal behavior in polymers, composites, and recycled plastics—helping improve material design, process control, quality assurance, and regulatory compliance.
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Small Crystals, Big Insights: How Electron Diffraction is Transforming Materials, Life Science, and Chemistry Research
This white paper details how electron diffraction (microED) is revolutionizing materials, life science, and chemistry research by determining crystal structures from powders, regardless of the size or quality of the crystallites. It features case studies in pharmaceutical and MOF research, along with over forty selected publications.
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Additive Manufacturing
This Solution Guide is written for engineers working in additive manufacturing (AM) who want better ways to understand their parts, diagnose issues, and improve designs. You do not need prior experience with X-ray microscopy or computed tomography (CT) to get value from it. The examples and workflows are designed to demonstrate how CT helps address practical AM issues, such as porosity, lack of fusion, lattice deviations, and other feature-level challenges that are difficult to detect with surface inspections alone.
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