ブチルリチウム(109-72-8)

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ブチルリチウム 製品概要
化学名:ブチルリチウム
英語化学名:n-Butyllithium
别名:LITHIUMBUTYL;N-BUTYLLITHIUM;BUTYLLITHIUM SOLUTION, ~2.7 M IN HEPTANE;N-BUTYLLITHIUM, 2.2M SOLUTION IN CYCLOHEXANE;n-Butyllithium1.6M solution in hexanesAcroSeal§3;n-Butyllithium2.5M solution in hexanesAcroSeal§3;n-Butyllithium2.2M solution in cyclohexaneAcroSeal§3;n-Butyllithium2.6M solution in tolueneAcroSeal§3
CAS番号:109-72-8
分子式:C4H9Li
分子量:64.06
EINECS:203-698-7
カテゴリ情報:Organometallics;Alkyl Metals;Classes of Metal Compounds;Grignard Reagents & Alkyl Metals;Li (Lithium) Compounds;Synthetic Organic Chemistry;Typical Metal Compounds;metal alkyl;Alkyl;Chemical Synthesis;Organic Bases;Organolithium;Organometallic Reagents;Synthetic Reagents;Metal Compounds;109-72-8
Mol File:109-72-8.mol
ブチルリチウム
ブチルリチウム 物理性質
融点 -95 °C
沸点 80 °C
比重(密度) 0.68 g/mL at 20 °C
闪点 10 °F
貯蔵温度 2-8°C
溶解性Miscible with diethyl ether and cyclohexane.
外見 liquid
yellow
比重0.695
臭い (Odor)Odor of the solvent
水溶解度 vigorous reaction
Sensitive Air & Moisture Sensitive
Hydrolytic Sensitivity8: reacts rapidly with moisture, water, protic solvents
BRN 1209227
暴露限界値ACGIH: TWA 50 ppm (Skin)
OSHA: TWA 500 ppm(1800 mg/m3)
NIOSH: IDLH 1100 ppm; TWA 50 ppm(180 mg/m3)
LogP1.25-2.31
CAS データベース109-72-8(CAS DataBase Reference)
NISTの化学物質情報Butyl lithium(109-72-8)
EPAの化学物質情報Lithium, butyl- (109-72-8)
安全性情報
主な危険性 F,C,N
Rフレーズ 14/15-17-34-48/20-51/53-62-65-67-63-35-11-15-50/53-66
Sフレーズ 6-9-16-26-36/37/39-45-61-62-6A-46-43B-43-60-33-29-5
RIDADR UN 3399 4.3/PG 1
WGK Germany 3
3-10
TSCA Yes
国連危険物分類 4.3
容器等級 I
HSコード 29319090
毒性There is little toxicity data available for the butyllithiums; for data on ether and hydrocarbon solvents, see the appropriate LCSSs.
MSDS Information
ProviderLanguage
n-Butyllithium English
SigmaAldrich English
ACROS English
ALFA English
ブチルリチウム Usage And Synthesis
外観うすい黄赤色~黄色~緑色透明液体~濁った液体
溶解性水, アルコールにより分解。炭化水素, エーテルに易溶。炭化水素及びエーテル類に極めて溶けやすく、水によって急速に分解し、エタノール又は酸によって激しく分解する。
用途有機合成試薬。
用途共役ジエンのアニオン重合開始剤、飽和および不飽和カルボニル化合物のアルキル化反応などに用いられる。
使用上の注意不活性ガス封入
化学的特性n-Butyllithium is a colorless crystalline solid or clear yellow solution. Due to its high reactivity and extreme solubility, even in its impurities, it is commonly thought to be a viscous liquid.
使用n-Butyllithium is a strong nucleophile in the synthetic organic chemistry. It is also used as an initiator in the polymerization process.
使用n-Butyllithium is used as a polymerization initiator in the production of elastomers like polybutadiene and styrene- butadiene- styrene. As a strong base, it is utilized in the synthesis of organic compounds. It undergoes thermal decomposition to prepare 1-butene.
製造方法Industrially, n-butyllithium is produced by the reaction of n-butyl chloride with lithium metal dispersion in various hydrocarbon solvents. Hexane is the most commonly used solvent. Up to one-half of the lithium is replaced with sodium in order to lower the cost of the butyllithium and increase the reactivity of the dispersion. The reaction is carried out below the boiling point of the solvent.
The laboratory procedure is essentially the same except that pentane and diethyl ether are two of the more popular solvents. The preparation runs smoothly in ether at lower temperatures but the product must either be used immediately or kept refrigerated due to the rapid cleavage of ether by n-butyllithium.
定義ChEBI: Butyllithium is an alkyllithium compound.
燃焼性と爆発性The risk of fire or explosion on exposure of butyllithium solutions to the atmosphere depends on the identity of the organolithium compound, the nature of the solvent, the concentration of the solution, and the humidity. t-Butyllithium solutions are the most pyrophoric and may ignite spontaneously on exposure to air. Dilute solutions (1.6 M, 15% or less) of n-butyllithium in hydrocarbon solvents, although highly flammable, have a low degree of pyrophoricity and do not spontaneously ignite. Under normal laboratory conditions (25 °C, relative humidity of 70% or less), solutions of -20% concentration will usually not ignite spontaneously on exposure to air. More concentrated solutions of n-butyllithium (50 to 80%) are most dangerous and will immediately ignite on exposure to air. Contact with water or moist materials can lead to fires and explosions, and the butyllithiums also react violently with oxygen.
貯蔵In particular, butyllithium should be stored and handled in areas free of ignition sources, and containers of butyllithium should be stored under an inert atmosphere. Work with butyllithium should be conducted in a fume hood under an inert gas such as nitrogen or argon. Safety glasses, impermeable gloves, and a fire-retardant laboratory coat are required.
不和合性The butyllithiums are extremely reactive organometallic compounds. Violent explosions occur on contact with water with ignition of the solvent and of the butane produced. t-Butyllithium will ignite spontaneously in air. The butyllithiums ignite on contact with water, carbon dioxide, and halogenated hydrocarbons. The butyllithiums are incompatible with acids, halogenated hydrocarbons, alcohols, and many other classes of organic compounds.
廃棄物の処理Excess butyllithium solution can be destroyed by dilution with hydrocarbon solvent to a concentration of approximately 5 wt %, followed by gradual addition to water with vigorous stirring under an inert atmosphere. Alternatively, the butyllithium solution can be slowly poured (transfer by cannula for s- or tbutyllithium) into a plastic tub or other container of powdered dry ice.
The residues from the above procedures and excess butyllithium should be placed in an appropriate container, clearly labeled, and handled according to your institution's waste disposal guidelines.
Tags:109-72-8