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http://schema.org/creator mailto:georgehadib@gmail.com https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://schema.org/dateCreated 2022-03-22 00:45:37.418119+00:00 https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://schema.org/dateModified 2025-03-05 01:06:34.665385+00:00 https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://schema.org/datePublished 2022-03-22 00:45:37.418119+00:00 https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://schema.org/description The dataset corresonds to the article that reports the use of coherent X-ray diffraction imaging (CXDI) to study the internal structure of microscopic shale fragments and wide-angle X-ray diffraction (WAXD) measurement was performed in tandem to study the minerology of the shale microparticles. It was possible to identify pyrite nanocrystals as inclusions in the quartz-clay matrix and the nanoscale pore structure. The combined CXDI-WAXD analysis enabled establishing a correlation between sample morphology and crystallite shape and size. The results highlight the potential of the combined CXDI-WAXD approach as an upcoming imaging modality for 3D nanoscale studies of shales and other geological formations via serial measurements of microscopic fragments, including cuttings from drillings. https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://schema.org/encodingFormat application/ld+json https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://schema.org/hasPart https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/folders/4d314ee4-f6d8-4b96-80bb-7522784a783f https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://schema.org/hasPart https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/folders/4f5e1b86-1a32-4834-9ce5-3ab995de20c0 https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://schema.org/hasPart https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/folders/cbcded08-a7a8-47c3-afa0-4d72dadf6d9d https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://schema.org/hasPart https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/folders/ccdf7fe2-faa0-4ece-b6db-aca1fa2afac6 https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://schema.org/identifier https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1 https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://schema.org/license https://choosealicense.com/no-permission/ https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://schema.org/name Nanoscale imaging of shale fragments with coherent X-ray diffraction https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://w3id.org/ro-id/rohub/model#creation_mode MANUAL https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://www.w3.org/1999/02/22-rdf-syntax-ns#type http://purl.org/wf4ever/ro#ResearchObject https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://www.w3.org/1999/02/22-rdf-syntax-ns#type http://purl.org/wf4ever/roevo#LiveRO https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://www.w3.org/1999/02/22-rdf-syntax-ns#type http://schema.org/Dataset https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://www.w3.org/1999/02/22-rdf-syntax-ns#type http://w3id.org/ro/earth-science#DataResearchObject https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ http://www.w3.org/1999/02/22-rdf-syntax-ns#type https://w3id.org/ro/terms/earth-science#DataResearchObject https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/ https://www.w3.org/ns/iana/link-relations/relation#cite-as Basab Chattopadhyay. "Nanoscale imaging of shale fragments with coherent X-ray diffraction." ROHub. 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(2019).Nanoscale imaging of shale fragments with coherent X-ray diffraction [Data set]. Norstore. https://doi.org/10.11582/2019.00044 https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/resources/f7368d2a-e5fa-440d-b44b-062e18c07525 http://purl.org/dc/terms/rightsHolder Basab Chattopadhyay https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/resources/f7368d2a-e5fa-440d-b44b-062e18c07525 http://purl.org/dc/terms/type Experiment https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/resources/f7368d2a-e5fa-440d-b44b-062e18c07525 http://schema.org/author mailto:georgehadib@gmail.com https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/resources/f7368d2a-e5fa-440d-b44b-062e18c07525 http://schema.org/contentUrl https://archive.sigma2.no/pages/public/datasetDetail.jsf?id=10.11582/2019.00044 https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/resources/f7368d2a-e5fa-440d-b44b-062e18c07525 http://schema.org/creator mailto:georgehadib@gmail.com https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/resources/f7368d2a-e5fa-440d-b44b-062e18c07525 http://schema.org/dateCreated 2019-12-06 00:00:00 https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/resources/f7368d2a-e5fa-440d-b44b-062e18c07525 http://schema.org/dateModified 2022-03-22 00:45:49.589127+00:00 https://w3id.org/ro-id/dac2cd2c-712c-498a-a3ed-43ad9fab23e1/resources/f7368d2a-e5fa-440d-b44b-062e18c07525 http://schema.org/description The dataset corresonds to the article that reports the use of coherent X-ray diffraction imaging (CXDI) to study the internal structure of microscopic shale fragments and wide-angle X-ray diffraction (WAXD) measurement was performed in tandem to study the minerology of the shale microparticles. It was possible to identify pyrite nanocrystals as inclusions in the quartz-clay matrix and the nanoscale pore structure. The combined CXDI-WAXD analysis enabled establishing a correlation between sample morphology and crystallite shape and size. 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