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SmartLab

The SmartLab is the most novel high-resolution diffractometer available today. Perhaps its most novel feature is the SmartLab Guidance software, which provides the user with an intelligent interface that guides you through the intricacies of each experiment. It is like having an expert standing by your side. The system incorporates a high resolution θ/θ closed loop goniometer drive system, cross beam optics (CBO), an in-plane…

Rigaku Corporation

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Average Rating 4.9

|3Scientists have reviewed this product

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Most of the specifications required are present and easy to use with instructions

 

Average Rating 4.7

Application Area:

X-ray diffraction studies

The product comes with instructions on smart lab software, which very helpful even for no-technical persons to operate.

Review Date: 6 Sept 2022 | Rigaku Corporation

Rigaku Smart lab is the most powerful tool for the primary analysis of materials.

 

Average Rating 5.0

Application Area:

structural analysis

Rigaku Smart lab is equipped with state of the art facility with a user-friendly software interface. it provides results with high accuracy with small sample amounts. It enhances the capabilities of the user to do more advanced research using this powerful tool.

Review Date: 6 Sept 2022 | Rigaku Corporation

Great laboratory partner

 

Average Rating 5.0

Application Area:

Material Characterization

It gives me the best repeatability and reproducibility in my material characterization studies. It is a very user friendly instrument with easy to understand and use software installed.

Review Date: 5 Mar 2018 | Rigaku Corporation

The SmartLab is the most novel high-resolution diffractometer available today. Perhaps its most novel feature is the SmartLab Guidance software, which provides the user with an intelligent interface that guides you through the intricacies of each experiment. It is like having an expert standing by your side.

The system incorporates a high resolution θ/θ closed loop goniometer drive system, cross beam optics (CBO), an in-plane scattering arm, and an optional 9.0 kW rotating anode generator.

Coupling a computer controlled alignment system with a fully automated optical system and the Guidance software makes it easy to switch between hardware modes, ensuring that your hardware complexity is never holding back your research.

Whether you are working with thin films, nanomaterials, powders, or liquids the SmartLab will give you the functionality to make the measurements you want to make when you want to make them.


SmartLab Features:

  • Full automated alignment under computer control.
  • Optional in-plane diffraction arm for in-plane measurements without reconfiguration.
  • Focusing and parallel beam geometries without reconfiguration.
    SAXS capabilities.
Application NoteMaterials

Quantification of Trace Crystal Polymorph Components using a High-speed 1-Dimensional Detector

Materials with the same chemical formula but different crystal structures are called polymorphs. Since an X-ray diffraction profile depends on the crystal structure of the measured materials, XRD is used to evaluate crystal polymorphs. In this application note, a trace component of anatase, a commercially sold reagent, was evaluated with a standard addition method by using a high-speed 1-dimensional detector.


Application NoteMaterials

Particle Diameter Distribution of Subnano Gold Particles using the Small-Angle X-ray Scattering Method

By using the small-angle x-ray scattering method, it is possible to evaluate the size distribution of powders, microparticles dispersed in liquid, and particles/pores distributed in thin films. In particular, it is possible to evaluate the average size and distribution of sub-nanometer particles, which are difficult to evaluate with a TEM or DLS. In this application note, the size distribution of gold nanoparticles in organic solvent was evaluated.

Rigaku SmartLab Goniometer

Rigaku SmartLab®, an advanced X-ray Diffractometer (XRD), is a versatile multipurpose X-ray diffraction system with Guidance™ expert system intelligent software. This video of actual instrument operation demonstrates goniometer measurement geometries associated with a variety of common XRD experiments and includes the series of steps describing the fully automated optical alignment process.





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