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Mendeleev Communications, 1992, Volume 2, Issue 3, Pages 93–95
DOI: https://doi.org/10.1070/MC1992v002n03ABEH000149
(Mi mendc5420)
 

This article is cited in 23 scientific papers (total in 23 papers)

Planar Tetracoordinated Silicon and Phosphorus Geometries in Poiynitrogen-substituted [5.5.5.5]Fenestrenes

A. I. Boldyreva, P. Schleyerb, R. Keesec

a N.N. Semenov Federal Research Center for Chemical Physics, Russian Academy of Sciences, Moscow, Russian Federation
b Institut für Organische Chemie, Friedrich Alexander Universität Erlangen-Nürnberg, Erlangen, Germany
c Institut fur Organische Chemie, Universitat Bern, Bern, Switzerland
Abstract: The square planar structure for polynitrogen [5.5.5.5]-sila- and phospho-fenestrenes has been predicted computationally at ab initio HF/3-21G(*) level.
Document Type: Article
Language: English


Citation: A. I. Boldyrev, P. Schleyer, R. Keese, “Planar Tetracoordinated Silicon and Phosphorus Geometries in Poiynitrogen-substituted [5.5.5.5]Fenestrenes”, Mendeleev Commun., 2:3 (1992), 93–95
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  • https://www.mathnet.ru/eng/mendc/v2/i3/p93
  • This publication is cited in the following 23 articles:
    1. Tyler J. Hannah, Saurabh S. Chitnis, “Ligand-enforced geometric constraints and associated reactivity in p-block compounds”, Chem. Soc. Rev., 53:2 (2024), 764  crossref
    2. Xiao‐han Yin, Hong‐lin Zeng, Xin‐bo Liu, Xi‐Ling Xu, Hong‐Guang Xu, Gabriel Merino, Wei‐jun Zheng, Zhong‐hua Cui, “Planar Tetracoordinate Silicon in Si3Cu3- Cluster”, Angew Chem Int Ed, 2024  crossref
    3. Xiao‐han Yin, Hong‐lin Zeng, Xin‐bo Liu, Xi‐Ling Xu, Hong‐Guang Xu, Gabriel Merino, Wei‐jun Zheng, Zhong‐hua Cui, “Planar Tetracoordinate Silicon in Si3Cu3- Cluster”, Angewandte Chemie, 2024  crossref
    4. 田浩 缪, “Computational Study on a New Class of Silicon-Based Compounds Containing Planar Tetra-Coordination”, JAPC, 11:04 (2022), 209  crossref
    5. Lukas M. Sigmund, Rouven Maier, Lutz Greb, “The inversion of tetrahedral p-block element compounds: general trends and the relation to the second-order Jahn–Teller effect”, Chem. Sci., 13:2 (2022), 510  crossref
    6. Lukas M. Sigmund, Christopher Ehlert, Ganna Gryn'ova, Lutz Greb, “Stereoinversion of tetrahedral p-block element hydrides”, The Journal of Chemical Physics, 156:19 (2022)  crossref
    7. Lukas M. Sigmund, Eliane Engels, Nick Richert, Lutz Greb, “Calix[4]pyrrolato gallate: square planar-coordinated gallium(iii) and its metal–ligand cooperative reactivity with CO2 and alcohols”, Chem. Sci., 13:37 (2022), 11215  crossref
    8. Yuwei Zhang, Caiyun Zhang, Yirong Mo, Zexing Cao, “Planar Tetracoordinate Silicon in Organic Molecules As Carbenoid‐Type Amphoteric Centers: A Computational Study”, Chemistry A European J, 27:4 (2021), 1402  crossref
    9. Fabian Ebner, Lutz Greb, “An isolable, crystalline complex of square-planar silicon(IV)”, Chem, 7:8 (2021), 2151  crossref
    10. Priyabrata Ghana, Jens Rump, Gregor Schnakenburg, Marius I. Arz, Alexander C. Filippou, “Planar Tetracoordinated Silicon (ptSi): Room-Temperature Stable Compounds Containing Anti-van't Hoff/Le Bel Silicon”, J. Am. Chem. Soc., 143:1 (2021), 420  crossref
    11. Priyabrata Ghana, Springer Theses, Synthesis, Characterization and Reactivity of Ylidyne and μ-Ylido Complexes Supported by Scorpionato Ligands, 2019, 129  crossref
    12. Jin-Chang Guo, Lin-Yan Feng, Xiao-Ying Zhang, “Low-dimensional nanocomplexes based on planar tetracoordinate Si/Ge: Nanoribbons X Ni2+2Cl2+2 (X = Si, Ge) and nanotubes Si Ni2Cl2”, Computational and Theoretical Chemistry, 1128 (2018), 24  crossref
    13. Yu Wang, Man Qiao, Yafei Li, Zhongfang Chen, “A two-dimensional CaSi monolayer with quasi-planar pentacoordinate silicon”, Nanoscale Horiz., 3:3 (2018), 327  crossref
    14. Li-Ming Yang, Ivan A. Popov, Alexander I. Boldyrev, Thomas Heine, Thomas Frauenheim, Eric Ganz, “Post-anti-van't Hoff-Le Bel motif in atomically thin germanium–copper alloy film”, Phys. Chem. Chem. Phys., 17:27 (2015), 17545  crossref
    15. Li‐Ming Yang, Eric Ganz, Zhongfang Chen, Zhi‐Xiang Wang, Paul von Ragué Schleyer, “Four Decades of the Chemistry of Planar Hypercoordinate Compounds”, Angew Chem Int Ed, 54:33 (2015), 9468  crossref
    16. Li‐Ming Yang, Eric Ganz, Zhongfang Chen, Zhi‐Xiang Wang, Paul von Ragué Schleyer, “Vier Jahrzehnte Chemie der planar hyperkoordinierten Verbindungen”, Angewandte Chemie, 127:33 (2015), 9602  crossref
    17. Yafei Li, Fengyu Li, Zhen Zhou, Zhongfang Chen, “SiC2 Silagraphene and Its One-Dimensional Derivatives: Where Planar Tetracoordinate Silicon Happens”, J. Am. Chem. Soc., 133:4 (2011), 900  crossref
    18. D. Szieberth, M. Takahashi, Y. Kawazoe, “Stabilization of Square Planar Silicon: A New Building Block for Conjugated Si-Containing Systems”, J. Phys. Chem. A, 113:4 (2009), 707  crossref
    19. P. Belanzoni, G. Giorgi, G. F. Cerofolini, A. Sgamellotti, “Planar Tetracoordinated Silicon in Silicon Carbonyl Complexes:  A DFT Approach”, J. Phys. Chem. A, 110:13 (2006), 4582  crossref
    20. Reinhart Keese, “Carbon Flatland:  Planar Tetracoordinate Carbon and Fenestranes”, Chem. Rev., 106:12 (2006), 4787  crossref
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
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