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      Fulfilling the promise of the materials genome initiative with high-throughput experimental methodologies

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          Two Dimensional Atomic Crystals

          We report free-standing atomic crystals that are strictly 2D and can be viewed as individual atomic planes pulled out of bulk crystals or as unrolled single-wall nanotubes. By using micromechanical cleavage, we have prepared and studied a variety of 2D crystals, including single layers of boron nitride, graphite, several dichalcogenides and complex oxides. These atomically-thin sheets (essentially gigantic 2D molecules unprotected from the immediate environment) are stable under ambient conditions, exhibit high crystal quality and are continuous on a macroscopic scale.
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            Giant negative magnetoresistance in perovskitelike La2/3Ba1/3MnOx ferromagnetic films.

            (1993)
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              The medicinal chemist's toolbox for late stage functionalization of drug-like molecules.

              The advent of modern C-H functionalization chemistries has enabled medicinal chemists to consider a synthetic strategy, late stage functionalization (LSF), which utilizes the C-H bonds of drug leads as points of diversification for generating new analogs. LSF approaches offer the promise of rapid exploration of structure activity relationships (SAR), the generation of oxidized metabolites, the blocking of metabolic hot spots and the preparation of biological probes. This review details a toolbox of intermolecular C-H functionalization chemistries with proven applicability to drug-like molecules, classified by regioselectivity patterns, and gives guidance on how to systematically develop LSF strategies using these patterns and other considerations. In addition, a number of examples illustrate how LSF approaches have been used to impact actual drug discovery and chemical biology efforts.
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                Author and article information

                Journal
                Applied Physics Reviews
                Applied Physics Reviews
                AIP Publishing
                1931-9401
                March 2017
                March 2017
                : 4
                : 1
                : 011105
                Article
                10.1063/1.4977487
                37239a68-bcf6-4d91-b11f-a443d3b46493
                © 2017
                History

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