请输入您要查询的百科知识:

 

词条 Octadecaborane
释义

  1. Synthesis

  2. Structure

  3. References

{{Chembox
| Watchedfields = changed
| verifiedrevid = 428967414
| Name = Octadecaborane(22)
| ImageFile1 = B18H22 from Xray coordinates.tif
| ImageFile2 = Iso-B18H22 from Xray coordinates.tif
| OtherNames = octadecaborane; octadecaboron doicosahydride; octodecaborane; n-Octadecaborane; i-Octadecaborane
|Section1={{Chembox Identifiers
| CASNo_Ref = {{cascite|correct|??}}
| CASNo = 21107-56-2
|Section2={{Chembox Properties
| Formula = B18H22
| MolarMass = 216.77 g/mol
| Density = 1.012 g/cm3
| Appearance = White to off white powder
| Solvent =
| SolubleOther =
| MeltingPtC = 180 and 129
| MeltingPt_notes = n-B18H22 and i-B18H22 respecitvely
| BoilingPt =
}}

Octadecaborane is an inorganic compound, a borane with chemical formula B18H22. It is a colorless flammable solid, like many higher boron hydrides. Although the compound has no practical applications, its structure is of theoretical and pedagogical interest.

Synthesis

It is formed by oxidative degradation of B20H182− or by oxidative coupling of B9H12.

Structure

Two isomers are known of octadecaborane, providing the first example of isomers in a boron-hydride cluster. The clusters are also of interest because the boron centers shared between the two subunits have an unusually high number of B-B interactions. The isomers consists of two B9H11 polyhedral subunits, each having a decaborane-like form, joined at a B–B edge.[1][2] These two boron atoms are each coordinated to six others; this compound was the first one found to have such a high number of borons coordinated around a single boron center.[3] There are two different geometric isomers of this compound, differing in the orientation of the two edge-fused polyhedra to each other.[1][2] This compound was the first borane found to have multiple isomeric forms.[4] Among the geometric isomers, one with chirality was the first borane to be resolved into its separate enantiomers, and was only the second chiral borane known at that time.[5]

References

1. ^{{cite journal |title= The chemistry of n-B18H22 and i-B18H22 |first1= Frederic P. |last1= Olsen |first2= Ravindra C. |last2= Vasavada |first3= M. Frederick |last3= Hawthorne |journal= J. Am. Chem. Soc. |year= 1968 |volume= 90 |issue= 15 |pages= 3946–3951 |doi= 10.1021/ja01017a007 }}
2. ^{{cite journal |title= Distinct Photophysics of the Isomers of B18H22 Explained |first1= Michael G.S. |last1= Londesborough |first2= Drahomír |last2= Hnyk |first3= Jonathan |last3= Bould |first4= Luis |last4= Serrano-Andrés |first5= Vicenta |last5= Sauri |first6= Josep M. |last6= Oliva |first7= Pavel |last7= Kubát |first8= Tomáš |last8= Polívka |first9= Kamil |last9= Lang |journal= Inorg. Chem. |year= 2012 |volume= 51 |issue= 3 |pages= 1471–1479 |doi= 10.1021/ic201726k |pmid= 22224484 }}
3. ^{{ cite journal |author1=Simpson, P. G. |author2=Lipscomb, W. N. | title = Molecular Structure of B18H22 | journal = Proceedings of the National Academy of Sciences of the United States of America | year = 1962 | volume = 48 | issue = 9 | pages = 1490–1491 | pmid = 16590990 | pmc = 220984 | url = http://www.pnas.org/content/48/9/1490.full.pdf |doi=10.1073/pnas.48.9.1490 | bibcode = 1962PNAS...48.1490S }}
4. ^{{cite journal |title= The Molecular Structure of i-B18H22 |first1= Paul G. |last1= Simpson |first2= Kirsten |last2= Folting |first3= William N. |last3= Lipscomb |journal= J. Am. Chem. Soc. |year= 1963 |volume= 85 |issue= 12 |pages= 1879–1880 |doi= 10.1021/ja00895a046 }}
5. ^{{cite journal |first1= S. |last1= Heřmánek |first2= J. |last2= Plešek |title= Chemistry of boranes. XXI. Resolution of iso-octadecaborane to optical enantiomers |journal= Collection of Czechoslovak Chemical Communications |volume= 35 |issue= 8 |year= 1970 |pages= 2488–2493 |doi=10.1135/cccc19702488}}
{{Hydrides by group}}

1 : Boranes

随便看

 

开放百科全书收录14589846条英语、德语、日语等多语种百科知识,基本涵盖了大多数领域的百科知识,是一部内容自由、开放的电子版国际百科全书。

 

Copyright © 2023 OENC.NET All Rights Reserved
京ICP备2021023879号 更新时间:2024/9/20 18:26:39