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7. Carboxonium derivatives based on closo-dodecaborate anions [1,2-B12H10O2CR]−: synthesis and molecular orbital analysis.

9. Reduction of Triple Bond in [B 12 H 11 NCR] − Anions by Lithium Aluminum Hydride: A Novel Approach to the Synthesis of N-Monoalkylammonio-Substituted closo -Dodecaborates.

11. Synthesis of Disubstituted Carboxonium Derivatives of Closo-Decaborate Anion [2,6-B10H8O2CC6H5]−: Theoretical and Experimental Study

12. New Aspects of the Synthesis of closo-Dodecaborate Nitrilium Derivatives [B12H11NCR]− (R = n-C3H7, i-C3H7, 4-C6H4CH3, 1-C10H7): Experimental and Theoretical Studies

14. Protonation of Borylated Carboxonium Derivative [2,6-B10H8O2CCH3]−: Theoretical and Experimental Investigation

15. Primary Amine Nucleophilic Addition to Nitrilium Closo-Dodecaborate [B12H11NCCH3]−: A Simple and Effective Route to the New BNCT Drug Design

16. Synthesis of Disubstituted Carboxonium Derivatives of Closo -Decaborate Anion [2,6-B 10 H 8 O 2 CC 6 H 5 ] − : Theoretical and Experimental Study.

17. Theoretical Insight into B–C Chemical Bonding in Closo -Borate [B n H n−1 CH 3 ] 2− (n = 6, 10, 12) and Monocarborane [CB n H n CH 3 ] − (n = 5, 9, 11) Anions.

18. New Aspects of the Synthesis of closo -Dodecaborate Nitrilium Derivatives [B 12 H 11 NCR] − (R = n -C 3 H 7 , i -C 3 H 7 , 4-C 6 H 4 CH 3 , 1-C 10 H 7): Experimental and Theoretical Studies.

21. Fused 1,2-Diboraoxazoles Based on closo-Decaborate Anion–Novel Members of Diboroheterocycle Class

22. Protonation of Borylated Carboxonium Derivative [2,6-B 10 H 8 O 2 CCH 3 ] − : Theoretical and Experimental Investigation.

24. Primary Amine Nucleophilic Addition to Nitrilium Closo -Dodecaborate [B 12 H 11 NCCH 3 ] − : A Simple and Effective Route to the New BNCT Drug Design.

25. Theoretical Study of closo -Borate Anions [B n H n ] 2− (n = 5–12): Bonding, Atomic Charges, and Reactivity Analysis.

26. Primary Amine Nucleophilic Addition to Nitrilium Closo -Dodecaborate [B 12 H 11 NCCH 3 ] - : A Simple and Effective Route to the New BNCT Drug Design.

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