Azacarbaborane chemistry. Butyl nitrite synthesis of the new eight-, nine- and ten-vertex azacarbaboranes exo- and endo-7-CH3-hypho-7,8-NCB6H11, nido-6,8,9-NC2B7H10, arachno-6,5,9-NC2B7H12 and arachno-6,5,10-C2NB7H12
Author:
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2003/DT/B300088E
Reference34 articles.
1. Degradative insertion reactions of nido-7,9-C2B9H–12.Synthesis and properties of 4-thia -6,8-dicarba-arachno-nonborane (10),4,6,8-SC2B6H10
2. Two Forgotten Ten-Vertex arachno Triheteroboranes: arachno-5,6,9-C2SB7H11 and arachno-5,6,9-C3B7H13, Their Molecular Structure Determination by ab initio/NMR Approach and Synthesis of the Thiacarbaborane
3. Systematic Syntheses and Structural Characterizations of Two Isomeric Phosphadicarbaboranes: 6-R-arachno-6,8,9-PC2B7H11 and 6-R-arachno-6,5,7-PC2B7H11. The First 10-Vertex Phosphadicarbaboranes
4. Synthetic and Structural Studies of Heteroatom−Polyborane Clusters: Simple, High-Yield Syntheses of nido-11-Vertex Thia- and Phosphaboranes, Thia- and Phosphadicarbaboranes, and the First Thiaphosphaborane
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1. Heteroatom Carboranes of the Main Group Elements;Carboranes;2016
2. A computational analysis of the apparent nido vs. hypho conflict: are we dealing with six- or eight-vertex open-face diheteroboranes?;Dalton Transactions;2015
3. Heteroatom carboranes of the main group elements;Carboranes;2011
4. Stereochemistry of free boranes and heteroboranes from electron scattering and model chemistries;Dalton Trans.;2009
5. Polyhedral metallathiaborane chemistry: Synthesis and characterisation of metallathiaboranes based on the twelve-vertex icosahedral closo-{MSB10H10} unit, where M is Rh or Ir;Journal of Organometallic Chemistry;2008-02
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