The Cambridge Structural Database (CSD) contains a complete record of all published organic and metal–organic small-molecule crystal structures. The database has been in operation for over 50 years and continues to be the primary means of sharing structural …

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Data informatics approaches were applied to the Cambridge Structural Database (CSD) in an effort to discern fundamental trends related to the preparation, occurrence, and general properties of organic solvates. Foremost, the 50 most abundant solvate classes in the CSD were identified through SMILES string ma Structural variants (SVs) rearrange large segments of DNA 1 and can have profound consequences in evolution and human disease 2,3.As national biobanks, disease-association studies, and clinical genetic testing have grown increasingly reliant on genome sequencing, population references such as the Genome Aggregation Database (gnomAD) 4 have become integral in the interpretation of single This tutorial review summarises the principal application areas, so far, for the data from more than 300,000 crystal structures of small organic and metal-organic compounds that are stored in the Cambridge Structural Database (CSD). This video explains how to locate and use the Cambridge Structural Database to find information on your metal complex. You will probably need to be on campus Updated weekly, WebCSD , the web version of the Cambridge Structural Database (CSD) is available to Stanford students, faculty, and staff.It enables users to access the CSD anywhere, any time, without installing any software. 2020-01-07 · Cambridge Structural Database/WebCSD The Cambridge Structural Database is the world repository of small molecule crystal structures. The database holds bibliographic, 2D chemical and 3D structural results from crystallographic analyses of organics, organometallics and metal complexes.

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In Depth: The Cambridge Structural Database. The Cambridge Structural Database is a large database of high-quality evaluated structures of organic and organometallic compounds as determined by X-ray and neutron diffraction (Allen et al., 1991a ).

CSD is the world'€™s leading repository of small organic and metal-organic crystal structures with over 500,000 x-ray  The Cambridge Structural Database (CSD) is the world's repository for small- molecule organic and metal-organic crystal structures. Containing the results of  This limited subset of data from records in the Cambridge Structural Database ( CSD) and Alternative Name(s) & Keywords: Gale Virtual Reference Library. 18 Dec 2019 The Cambridge Structural Database (CSD) is a world leading Structures can be displayed and the reference is automatically linked to  The Cambridge Structural Database System (CSD System) comprising all or some of such as the chemical diagram and literature reference (see Displaying . The continued increase in the number of entries in the Cambridge Structural Database (CSD; Allen, 2002) poses problems: it is Primary Program Reference .

The Cambridge Structural Database (CSD) is widely recognized as the world’s repository for small-molecule organic and metal-organic crystal structures, and has become an essential resource to scientists around the world.

Reference cambridge structural database

18 Dec 2019 The Cambridge Structural Database (CSD) is a world leading Structures can be displayed and the reference is automatically linked to  The Cambridge Structural Database System (CSD System) comprising all or some of such as the chemical diagram and literature reference (see Displaying . The continued increase in the number of entries in the Cambridge Structural Database (CSD; Allen, 2002) poses problems: it is Primary Program Reference .

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Structure Searching in the Cambridge Structural Database The default structure search in CSD is substructure. The structure editor functions in a manner similar to other tools; commonly used atoms and rings have buttons on the main screen, and lesser-used options appear in the menus at the top of the window. The Cambridge Structural Database has been used to investigate the detailed environment of water molecules, hydrogen bonded to oxygen and nitrogen atoms, within molecular crystal hydrates. Eight coordination states of water have been investigated for 3315 structures, and hydrogen bond length and angle data were obtained and analyzed. The two most common environments are those in which water The Cambridge Structural Database (CSD) Enterprise is a proprietary product in which the rights are held by the Cambridge Crystallographic Data Centre (CCDC) located at 12, Union Road, Cambridge, CB2 1EZ.

The validated information content, comprehensive literature coverage and statistical data for the CSD are summarized.
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The Cambridge Structural Database (CSD) contains a complete record of all published organic and metal–organic small-molecule crystal structures.

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The CSD (Cambridge Structural Database) and CSD System (including downloaded data, manuals, results, and printed products) shall be used exclusively for the purpose of scientific teaching and research, which may include research such as, for example into drug development or drug modifications capable of commercial exploitation.

Cambridge Structural Database. The Cambridge Structural Database is produced by the Cambridge Crystallographic Data Center ( http://www.ccdc.cam.ac.uk/products/csd/ ). It is a database of x-ray diffraction and neutron diffraction crystal structures of organic and organometallic substances. The crystal structures contained were all deposited in the database by individual scientists, usually at the time of journal publication, and records include the crystal structure coordinates, as well as The Cambridge Structural Database System (CSDS), comprising the Cambridge Structural Database (CSD) and its associated software, as available in mid‐2000 is described.

Cite this entry as: (2013) CSD, Cambridge Structural Database. In: Kretsinger R.H., Uversky V.N., Permyakov E.A. (eds) Encyclopedia of Metalloproteins.

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The database holds bibliographic, 2D chemical and 3D structural results from crystallographic analyses of organics, organometallics and metal complexes. Structural variants (SVs) rearrange large segments of DNA 1 and can have profound consequences in evolution and human disease 2,3.As national biobanks, disease-association studies, and clinical genetic testing have grown increasingly reliant on genome sequencing, population references such as the Genome Aggregation Database (gnomAD) 4 have become integral in the interpretation of single The Cambridge Structural Database (CSD) now contains data for more than a quarter of a million small‐molecule crystal structures. The information content of the CSD, together with methods for data acquisition, processing and validation, are summarized, with particular emphasis on the chemical information added by CSD editors.