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      B 7Be 6B 7: A Boron‐Beryllium Sandwich Complex

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          Most cited references58

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          Efficient implementation of the gauge-independent atomic orbital method for NMR chemical shift calculations

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            Synthesis of borophenes: Anisotropic, two-dimensional boron polymorphs.

            At the atomic-cluster scale, pure boron is markedly similar to carbon, forming simple planar molecules and cage-like fullerenes. Theoretical studies predict that two-dimensional (2D) boron sheets will adopt an atomic configuration similar to that of boron atomic clusters. We synthesized atomically thin, crystalline 2D boron sheets (i.e., borophene) on silver surfaces under ultrahigh-vacuum conditions. Atomic-scale characterization, supported by theoretical calculations, revealed structures reminiscent of fused boron clusters with multiple scales of anisotropic, out-of-plane buckling. Unlike bulk boron allotropes, borophene shows metallic characteristics that are consistent with predictions of a highly anisotropic, 2D metal.
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              Molecular single-bond covalent radii for elements 1-118.

              A self-consistent system of additive covalent radii, R(AB)=r(A) + r(B), is set up for the entire periodic table, Groups 1-18, Z=1-118. The primary bond lengths, R, are taken from experimental or theoretical data corresponding to chosen group valencies. All r(E) values are obtained from the same fit. Both E-E, E-H, and E-CH(3) data are incorporated for most elements, E. Many E-E' data inside the same group are included. For the late main groups, the system is close to that of Pauling. For other elements it is close to the methyl-based one of Suresh and Koga [J. Phys. Chem. A 2001, 105, 5940] and its predecessors. For the diatomic alkalis MM' and halides XX', separate fits give a very high accuracy. These primary data are then absorbed with the rest. The most notable exclusion are the transition-metal halides and chalcogenides which are regarded as partial multiple bonds. Other anomalies include H(2) and F(2). The standard deviation for the 410 included data points is 2.8 pm.
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                Author and article information

                Contributors
                (View ORCID Profile)
                Journal
                Angewandte Chemie International Edition
                Angew Chem Int Ed
                Wiley
                1433-7851
                1521-3773
                August 2023
                June 26 2023
                August 2023
                : 62
                : 31
                Affiliations
                [1 ] Institute of Atomic and Molecular Physics Jilin University Changchun 130023 China
                [2 ] Universidad Andrés Bello, Facultad de Ciencias Exactas Departamento de Ciencias Químicas Centro de Química Teórica & Computacional (CQT&C) Avenida República 275 8370146 Santiago de Chile Chile
                [3 ] Departamento de Fisica Aplicada Centro de Investigacion y de Estudios Avanzados Merida Km. 6 Antigua carretera a Progreso Apdo. Postal 73, Cordemex 97310 Mérida, Yuc. México
                [4 ] Jilin Provincial Key Laboratory of Applied Atomic and Molecular Spectroscopy Jilin University Changchun 130012 China
                Article
                10.1002/anie.202304997
                0a35d20a-840e-4117-b1b4-881a84d99b10
                © 2023

                http://creativecommons.org/licenses/by-nc-nd/4.0/

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