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Crystal structure and Hirshfeld surface analysis of ketorolac tromethamine. [PDF]
Shaposhnyk AM, Rudiuk VV, Baumer VN.
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Crystal structure of oxygen-evolving photosystem II at a resolution of 1.9 Å
Nature, 2011Yasufumi Umena +2 more
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Acta Crystallographica Section B Structural Science, Crystal Engineering and Materials, 2022
A personal view is offered on various solved and open problems related to crystal structures: the present state of reconstructing the crystal electron density from X-ray diffraction data; characterization of atomic and molecular motion from a combination of atomic displacement parameters and quantum chemical calculations; Bragg diffraction and diffuse ...
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A personal view is offered on various solved and open problems related to crystal structures: the present state of reconstructing the crystal electron density from X-ray diffraction data; characterization of atomic and molecular motion from a combination of atomic displacement parameters and quantum chemical calculations; Bragg diffraction and diffuse ...
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Crystal Structure and Prediction
Annual Review of Physical Chemistry, 2015The notion of structure is central to the subject of chemistry. This review traces the development of the idea of crystal structure since the time when a crystal structure could be determined from a three-dimensional diffraction pattern and assesses the feasibility of computationally predicting an unknown crystal structure of a given molecule. Crystal
Thakur, Tejender S +2 more
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Crystal structure of heliorhodopsin
Nature, 2019Heliorhodopsins (HeRs) are a family of rhodopsins that was recently discovered using functional metagenomics1. They are widely present in bacteria, archaea, algae and algal viruses2,3. Although HeRs have seven predicted transmembrane helices and an all-trans retinal chromophore as in the type-1 (microbial) rhodopsin, they display less than 15% sequence
Wataru, Shihoya +23 more
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The Crystal Structure of Nonactin
Helvetica Chimica Acta, 1972AbstractAn X‐ray crystal structure investigation of the macrotetrolide antibiotic nonactin is reported. The shape of the molecule is discussed with special reference to the conformational changes involved in passing from free nonactin to the K+‐complex.
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