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x ray diffraction xrd data  (Rigaku Corporation)


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    Structured Review

    Rigaku Corporation x ray diffraction xrd data
    X Ray Diffraction Xrd Data, supplied by Rigaku Corporation, used in various techniques. Bioz Stars score: 99/100, based on 43919 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/x-ray+diffraction+data/SmartLab/pmc13528682-230-0-11
    Average 99 stars, based on 43919 article reviews
    x ray diffraction xrd data - by Bioz Stars, 2026-10
    99/100 stars

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    Related Articles

    X-ray Diffraction:

    Article Title: Targeting the circadian negative regulator period in Bombyx mori : a strategy for improving silk fibroin yield and mechanical properties
    Article Snippet: Deconvolution and curve fitting of the amide I band (1600–1700 cm −1 ) were performed using PeakFit software (version 4.12; Systat Software GmbH, Erkrath, Germany). .. XRD patterns were recorded with a SmartLab X-ray diffractometer (Rigaku Corporation, Tokyo, Japan) with Cu Kα radiation, over a 2θ range of 5° to 80° at a scanning rate of 10°/min. ..

    Article Title: Solvent‐Desorption‐Induced Formation of a Long‐Period Polymorph Yielding a High‐Performance Porphyrin‐Based Organic Semiconductor
    Article Snippet: .. Out‐of‐plane XRD measurements of single crystals on Si/SiO 2 substrates were performed using a Rigaku SmartLab X‐ray diffractometer with a Cu Kα source ( λ = 1.5418 Å) in the θ /2 θ scan mode with a speed of 1° min −1 and a step interval of 0.02°. .. TG‐DTA measurements were carried out on a Shimadzu DTG‐60 instrument at a heating rate of 10°C min − 1 under an Ar atmosphere.

    Article Title: Single-component white-light-emitting carbon quantum dots from lignite coal with adaptive broad colour-temperature tunability
    Article Snippet: The CQD morphology, including histograms, elemental maps, and microstructural features, was characterized by high-resolution transmission electron microscopy (HRTEM) using a Thermo Fisher Scientific Talos F200X G2 microscope. .. The crystalline structure of the CQDs was further evaluated by X-ray diffraction (XRD) using a Rigaku SmartLab diffractometer. .. Surface chemical functionalities were identified by Fourier transform infrared (FTIR) spectroscopy using a Shimadzu IRAffinity-1S instrument.

    Article Title: Ni–Cu bimetallic nanocatalyst stabilized on magnetic nanoparticles for reduction of nitroarenes and one-pot C–N cross-coupling reactions
    Article Snippet: Transmission electron microscopy (TEM) images were obtained using a Philips EM208S microscope operated at 100 kV. .. Powder X-ray diffraction (XRD) patterns were recorded on a Rigaku SmartLab instrument. .. Thermogravimetric analysis (TGA) of the samples was conducted under a nitrogen atmosphere over a temperature range of 25–1000 °C with a heating rate of 10 °C min −1 (Q600 model, TA Instruments, USA).

    Article Title: Supramolecular Chiral Assemblies from Benzoselenadiazole‐Alanine‐Acylhydrazone Conjugates Enable Cardioprotection
    Article Snippet: .. Powder x‐ray diffraction (PXRD) patterns were recorded on a SmartLab diffractometer, Rigaku, Japan, using Cu Kα radiation at room temperature with a step size of 0.02°. ..

    Article Title: Lanthanum-modified biochar for the selective and efficient adsorption of ammonium nitrogen in wastewater
    Article Snippet: Microstructural features and elemental mapping were further investigated by transmission electron microscopy (TEM) (Tecnai G2 F20, FEI, USA) operated at 200 kV. .. Crystallographic structures were identified by X-ray diffraction (XRD) (SmartLab 3 kW, Rigaku, Japan) using Cu Kα radiation ( λ = 1.5418 Å) over a scanning range of 2 θ = 10°–80° and a scanning rate of 20° min −1 . ..

    other:

    Article Title: Multi-biomimetic poly(amino acid)-based Janus membrane integrating barrier and osteoinductive functions for cranial bone regeneration
    Article Snippet: Crystalline structures of the samples were characterized by X-ray diffraction (XRD, SmartLab, Rigaku Corporation, Japan) using Cu Kα radiation (λ = 1.5406 Å).



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    Workflow used for the analysis of the ML tools discussed in this article. (a) Optimization of the <t>65</t> <t>X-ray</t> crystal structures with either DFT or UMA, or no optimization, followed by calculations of magnetic shielding tensors either via RPBE or ShiftML3. (b) For the set of Ramos et al. , optimization of the reported PBE-D3 structures with either UMA (tasks omol or omc) or MACE-Polar-1, followed by calculations of magnetic shieldings with either PBE or ShiftML3.
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    Rigaku Corporation x ray diffraction xrd data acquisition
    Workflow used for the analysis of the ML tools discussed in this article. (a) Optimization of the <t>65</t> <t>X-ray</t> crystal structures with either DFT or UMA, or no optimization, followed by calculations of magnetic shielding tensors either via RPBE or ShiftML3. (b) For the set of Ramos et al. , optimization of the reported PBE-D3 structures with either UMA (tasks omol or omc) or MACE-Polar-1, followed by calculations of magnetic shieldings with either PBE or ShiftML3.
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    Rigaku Corporation powder x ray diffraction xrd data
    Workflow used for the analysis of the ML tools discussed in this article. (a) Optimization of the <t>65</t> <t>X-ray</t> crystal structures with either DFT or UMA, or no optimization, followed by calculations of magnetic shielding tensors either via RPBE or ShiftML3. (b) For the set of Ramos et al. , optimization of the reported PBE-D3 structures with either UMA (tasks omol or omc) or MACE-Polar-1, followed by calculations of magnetic shieldings with either PBE or ShiftML3.
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    Rigaku Corporation crystal x ray diffraction data
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    Crystal X Ray Diffraction Data, supplied by Rigaku Corporation, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Image Search Results


    Workflow used for the analysis of the ML tools discussed in this article. (a) Optimization of the 65 X-ray crystal structures with either DFT or UMA, or no optimization, followed by calculations of magnetic shielding tensors either via RPBE or ShiftML3. (b) For the set of Ramos et al. , optimization of the reported PBE-D3 structures with either UMA (tasks omol or omc) or MACE-Polar-1, followed by calculations of magnetic shieldings with either PBE or ShiftML3.

    Journal: Chemical Science

    Article Title: Accessible hybrid DFT-quality NMR crystallography via gas-phase machine learning interatomic potentials

    doi: 10.1039/d6sc04941a

    Figure Lengend Snippet: Workflow used for the analysis of the ML tools discussed in this article. (a) Optimization of the 65 X-ray crystal structures with either DFT or UMA, or no optimization, followed by calculations of magnetic shielding tensors either via RPBE or ShiftML3. (b) For the set of Ramos et al. , optimization of the reported PBE-D3 structures with either UMA (tasks omol or omc) or MACE-Polar-1, followed by calculations of magnetic shieldings with either PBE or ShiftML3.

    Article Snippet: Powder X-ray diffraction (PXRD) data were collected on a Rigaku MiniFlex benchtop diffractometer using Cu Kα radiation ( λ = 1.5406 Å) and a D/teX Ultra2 detector.

    Techniques:

    Comparison between the 13 C isotropic magnetic shieldings obtained via (a) X-ray/RPBE vs. RPBE-D2/RPBE, (b) UMA/RPBE vs. RPBE-D2/RPBE, (c) X-ray/ShiftML3 vs. RPBE-D2/RPBE, (d) UMA/ShiftML3 vs. RPBE-D2/RPBE. UMA was used with the task omol and the uma-s-1p1 model.

    Journal: Chemical Science

    Article Title: Accessible hybrid DFT-quality NMR crystallography via gas-phase machine learning interatomic potentials

    doi: 10.1039/d6sc04941a

    Figure Lengend Snippet: Comparison between the 13 C isotropic magnetic shieldings obtained via (a) X-ray/RPBE vs. RPBE-D2/RPBE, (b) UMA/RPBE vs. RPBE-D2/RPBE, (c) X-ray/ShiftML3 vs. RPBE-D2/RPBE, (d) UMA/ShiftML3 vs. RPBE-D2/RPBE. UMA was used with the task omol and the uma-s-1p1 model.

    Article Snippet: Powder X-ray diffraction (PXRD) data were collected on a Rigaku MiniFlex benchtop diffractometer using Cu Kα radiation ( λ = 1.5406 Å) and a D/teX Ultra2 detector.

    Techniques: Comparison