2020
DOI: 10.1002/anie.202000585
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Chiral Phosphoric Acid Catalyzed Atroposelective C−H Amination of Arenes

Abstract: N‐arylcarbazole structures are important because of their prevalence in natural products and functional OLED materials. C−H amination of arenes has been widely recognized as the most efficient approach to access these structures. Conventional strategies involving transition‐metal catalysts suffer from confined substrate generality and the requirement of exogenous oxidants. Organocatalytic enantioselective C–N chiral axis construction remains elusive. Presented here is the first organocatalytic strategy for the… Show more

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Cited by 166 publications
(67 citation statements)
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“…Although the methodology of seedmediated growth has been applied to many types of seeds, the growth of octahedral seeds enclosed by the thermodynamically stable {111} facets into other shapes has been very difficult to accomplish. Based on the previously reported experimental observations in the synthesis of Ag and Pd monometallic nanocrystals, [9,42,44] the growth would be automatically termi-nated as soon as an octahedral shape was attained. The atoms generated in the reaction solution would then undergo homogeneous nucleation to generate a second population of tiny nanoparticles.…”
Section: Seed-mediated Growth Of Pd Nanocrystalsmentioning
confidence: 99%
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“…Although the methodology of seedmediated growth has been applied to many types of seeds, the growth of octahedral seeds enclosed by the thermodynamically stable {111} facets into other shapes has been very difficult to accomplish. Based on the previously reported experimental observations in the synthesis of Ag and Pd monometallic nanocrystals, [9,42,44] the growth would be automatically termi-nated as soon as an octahedral shape was attained. The atoms generated in the reaction solution would then undergo homogeneous nucleation to generate a second population of tiny nanoparticles.…”
Section: Seed-mediated Growth Of Pd Nanocrystalsmentioning
confidence: 99%
“…Controlling the shapes and related properties of colloidal metal nanocrystals are critical to their vast applications in catalysis, photonics, electronics, sensing, and biomedicine. [1][2][3][4][5][6][7][8][9][10] Among the metals, Pd has attracted a great deal of attention and research efforts because of its fascinating performance in an array of catalytic reactions, such as Suzuki coupling, CO oxidation, alcohol oxidation, oxygen reduction, and selective hydrogenation. [11][12][13][14][15][16][17] Most of these applications prefer the use of Pd nanocrystals enclosed by a specific type of facet in order to optimize the activity and/or selectivity toward a reaction.…”
Section: Introductionmentioning
confidence: 99%
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