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688-73-3 分子结构
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tributylstannane

ChemBase编号:6209
分子式:C12H27Sn
平均质量:290.04378
单一同位素质量:291.11346986
SMILES和InChIs

SMILES:
C(C[Sn](CCCC)CCCC)CC
Canonical SMILES:
CCCC[Sn](CCCC)CCCC
InChI:
InChI=1S/3C4H9.Sn/c3*1-3-4-2;/h3*1,3-4H2,2H3;
InChIKey:
PIILXFBHQILWPS-UHFFFAOYSA-N

引用这个纪录

CBID:6209 http://www.chembase.cn/molecule-6209.html

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名称和登记号

名称和登记号

名称 登记号
IUPAC标准名
tributylstannane
IUPAC系统名
Tributylstannane
IUPAC传统名
tributyltin
别名
三丁基氢化锡
三丁基氢化锡 溶液
三正丁基氢化锡
tributylstannanyl
Tributyltin hydride
Tributylstannane
Tributylstannyl hydride
Tributyltin hydride solution
TBTH
Tri-n-butylstannane
Tri-n-butyltin hydride
Tributyltin hydride
CAS号
688-73-3
EC号
211-704-4
MDL号
MFCD00009416
Beilstein号
3587329
PubChem SID
24854056
24889424
160969634
99445072
PubChem CID
3032732
5948
CHEBI ID
27086
Chemspider ID
5734
Gmelin ID
4258
医学主题词(MeSH)
Tributyltin
维基百科标题
Tributyltin_hydride

理论计算性质

理论计算性质

ALOGPS 2.1 JChem
Log P 6.17  LOG S -3.52 
溶解度 8.82e-02 g/l 
Log P 3.2027  摩尔折射率 59.2157 cm3
极化性 28.1632 Å3 极化表面积 0.0 Å2
可自由旋转的化学键 里宾斯基五规则 true 
质子受体 质子供体
LogD (pH = 5.5) 3.2027  LogD (pH = 7.4) 3.2027 

分子性质

分子性质

理化性质 安全信息 产品相关信息 生物活性(PubChem)
溶解度
Slowly reacts in water expand 查看数据来源
熔点
0-1°C expand 查看数据来源
沸点
68-74°C/0.3mm expand 查看数据来源
80 °C/0.4 mmHg(lit.) expand 查看数据来源
80°C (at 50 Pa) expand 查看数据来源
闪点
104 °F expand 查看数据来源
-15 °C expand 查看数据来源
40 °C expand 查看数据来源
40°C(104°F) expand 查看数据来源
5 °F expand 查看数据来源
密度
0.895 g/mL at 25 °C expand 查看数据来源
1.082 g cm-3 expand 查看数据来源
1.082 g/mL at 25 °C(lit.) expand 查看数据来源
1.098 expand 查看数据来源
折射率
1.4730 expand 查看数据来源
n20/D 1.438 expand 查看数据来源
n20/D 1.473(lit.) expand 查看数据来源
保存注意事项
Air & Moisture Sensitive expand 查看数据来源
RTECS编号
WH8675000 expand 查看数据来源
欧盟危险性物质标志
易燃性(Flammable) 易燃性(Flammable) (F) expand 查看数据来源
环境危害性(Nature polluting) 环境危害性(Nature polluting) (N) expand 查看数据来源
有毒(Toxic) 有毒(Toxic) (T) expand 查看数据来源
联合国危险货物编号
1993 expand 查看数据来源
UN2929 expand 查看数据来源
MSDS下载
下载链接 expand 查看数据来源
下载链接 expand 查看数据来源
下载链接 expand 查看数据来源
德国WGK号
3 expand 查看数据来源
联合国危险货物等级
3 expand 查看数据来源
6.1 expand 查看数据来源
联合国危险货物包装类别(PG)
2 expand 查看数据来源
3 expand 查看数据来源
II expand 查看数据来源
危险公开号
10-21-25-36/38-48/23/25-50/53 expand 查看数据来源
11-21-25-36/38-48/23/25-50/53-65-67 expand 查看数据来源
安全公开号
16-26-33-36/37-45-60-61-62 expand 查看数据来源
26-36/37-45-61 expand 查看数据来源
35-36/37/39-45-60-61 expand 查看数据来源
36/37/39-45-60-61 expand 查看数据来源
TSCA收录
expand 查看数据来源
GHS危险品标识
GHS02 expand 查看数据来源
GHS06 expand 查看数据来源
GHS08 expand 查看数据来源
GHS09 expand 查看数据来源
GHS警示词
Danger expand 查看数据来源
GHS危险声明
H226-H301-H312-H315-H319-H372-H410 expand 查看数据来源
H301-H312-H315-H319-H372-H226-H400-H410 expand 查看数据来源
H301-H312-H315-H319-H372-H410 expand 查看数据来源
GHS警示性声明
P273-P280-P301 + P310-P305 + P351 + P338-P314-P501 expand 查看数据来源
P280-P273-P305+P351+P338-P309-P310-P501A expand 查看数据来源
个人保护装置
Eyeshields, Faceshields, full-face respirator (US), Gloves, multi-purpose combination respirator cartridge (US), type ABEK (EN14387) respirator filter expand 查看数据来源
RID/ADR
UN 1993 3/PG 2 expand 查看数据来源
UN 1993 3/PG 3 expand 查看数据来源
保存温度
2-8°C expand 查看数据来源
纯度
≥96.0% (GC) expand 查看数据来源
97% expand 查看数据来源
浓度
1 M in cyclohexane expand 查看数据来源
级别
purum expand 查看数据来源
其他组分
0.05% BHT as stabilizer expand 查看数据来源
线性分子式
[CH3(CH2)3]3SnH expand 查看数据来源
Empirical Formula (Hill Notation)
C12H28Sn expand 查看数据来源

详细说明

详细说明

DrugBank DrugBank Wikipedia Wikipedia Sigma Aldrich Sigma Aldrich
DrugBank -  DB08601 external link
Drug information: experimental
Sigma Aldrich -  234788 external link
Application
广泛使用的自由基试剂,可用于还原裂解、1自由基脱卤以及分子内自由基环化。2
自由基促进的分子内环化反应可生成 isoxazolo-benzaulene 环系。乙烯基锡片段可用于通过仿生 Diels-Alder 二聚化反应合成 (+)-panepophenanthrin
包装
10 g in glass bottle
50, 500 g in Sure/Seal™
Sigma Aldrich -  704091 external link
包装
10, 50 mL in glass bottle
Application
Reactant or reagent for:
• Alkyne hydrostannations1
• Intramolcular cyclization for the synthesis of zoanthamine alkaloids2
• Stereoselective C-glycosylation of pyranosides using Heck allylation3
• Synthesis of phenylbutenoid dimers for use in treating diseases4
• Preparation of N-acyl derivatives of ecteinascidin 7705
• Syntehsis of cyclonucleosides using black light induced radical cyclization6
Sigma Aldrich -  90915 external link
Other Notes
通过自由基中间体发挥作用的还原剂1,2,3,4

参考文献

参考文献

供应商提供 Google Scholar IconGoogle Scholar PubMed iconPubMed Google Books IconGoogle Books
  • Reducing agent and source of tributyltin radicals. Widely used for selective reduction of alkyl halides to alkanes by a radical chain mechanism. The reaction is tolerant of a wide range of functionality, including OH and NH, in contrast to polar metal hydride reagents. For reviews, see: Synthesis, 499 (1970); 665 (1987). For a brief feature on uses of this reagent in synthesis, see: Synlett, 173 (2007). For use in the synthesis of deoxy sugars via reductive rearrangement of glycosyl bromides, see: Org. Synth. Coll., 8,583 (1993). Cyclization of the initially-formed alkyl radical to a suitably positioned double bond may occur. Formation of 5-membered rings is strongly favoured, and ring closure onto an existing ring gives the cis-fused product. See, e.g.: J. Am. Chem. Soc., 108, 5893 (1986):
  • Intermolecular coupling with electron-deficient alkenes is also effective: Angew. Chem. Int. Ed., 23, 69 (1984); Org. Synth. Coll., 8, 148 (1993). Review: Synthesis, 417 (1988).
  • Secondary alcohols can be deoxygenated by reduction of their xanthate derivatives: J. Chem. Soc., Perkin 1, 1574 (1975); Org. Synth. Coll., 7, 139 (1990), avoiding the rearrangements encountered with carbocation-based methods.
  • TBTH also cleaves other C-heteroatom bonds, controlled by the stability of the resulting radical: Nitro-groups at tertiary centers are readily cleaved: Synthesis, 693 (1986). Azides are readily reduced to amines: Synlett, 342 (1991). C-S and C-Se bonds are also cleaved. J. Am. Chem. Soc., 104, 2046 (1982); 112, 4008 (1990); J. Org. Chem., 49, 5206 (1984); 54, 1234 (1989).
  • Dialdehydes and keto aldehydes undergo free-radical intramolecular pinacol coupling to give cyclic diols: J. Am. Chem. Soc., 117, 7283 (1995); J. Org. Chem., 63, 6357 (1998).
  • For generation and use of tributylstannyllithium, see: Org. Synth. Coll., 8, 562 (1993). Hydroxymethylation of TBTH occurs with LDA and paraformaldehyde. Subsequent reaction with dimethoxymethane gives the hydroxymethyl anion equivalent tributyl[(methoxymethoxy)methyl]stannane: Org. Synth. Coll., 9, 493, 704 (1998).
  • Arylstannanes have been produced by Pd-catalyzed coupling with aryl iodides: Synlett, 1064 (2000).
  • Free-radical hydrostannylation of alkenes occurs with TBTH to give alkylstannanes. The reaction is catalyzed by, e.g. Rh complexes: Chem. Lett., 881 (1988), or Pd complexes: Angew. Chem. Int. Ed., 35, 1329 (1996), and refs therein. Syn-addition to alkynes gives vinylstannanes, useful intermediates which undergo electrophilic substitution reactions with retention of configuration. Thus, iodine, NIS and NBS give vinyl halides: J. Org. Chem., 47, 404 (1982); Tetrahedron, 42, 3575 (1986), and alkyllithium compounds exchange to give vinyllithiums: J. Am. Chem. Soc., 99, 7365 (1977). Intramolecular reaction with a double bond has been used in cyclization reactions: Org. Synth. Coll., 8, 381 (1993):
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专利

专利

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