아지도트리메틸실란

아지도트리메틸실란
아지도트리메틸실란 구조식 이미지
카스 번호:
4648-54-8
한글명:
아지도트리메틸실란
동의어(한글):
아지도트라이메틸실레인;아지도트리메틸실란
상품명:
Azidotrimethylsilane
동의어(영문):
TMSN3;TRIMETHYLSILYL AZIDE;TMSiA;decomposes;(CH3)3SiN3;Trimethylazidosilane;Three methyl azide silane;CFS-548;AzidotrimethyL;Co-Formula CFS-548
CBNumber:
CB3444416
분자식:
C3H9N3Si
포뮬러 무게:
115.21
MOL 파일:
4648-54-8.mol
MSDS 파일:
SDS

아지도트리메틸실란 속성

녹는점
-95°C
끓는 점
92-95 °C(lit.)
밀도
0.876 g/mL at 20 °C(lit.)
굴절률
n20/D 1.415(lit.)
인화점
74 °F
저장 조건
2-8°C
용해도
톨루엔, 디클로로메탄, 디에틸 에테르 및 대부분의 유기 용매와 혼합 가능합니다.
물리적 상태
액체
색상
무색투명~미황색
Specific Gravity
0.868
수용성
물에서 분해되다
감도
Moisture Sensitive
Hydrolytic Sensitivity
8: reacts rapidly with moisture, water, protic solvents
BRN
1903730
InChIKey
SEDZOYHHAIAQIW-UHFFFAOYSA-N
CAS 데이터베이스
4648-54-8(CAS DataBase Reference)
NIST
Azidotrimethylsilane(4648-54-8)
EPA
Azidotrimethylsilane (4648-54-8)
안전
  • 위험 및 안전 성명
  • 위험 및 사전주의 사항 (GHS)
위험품 표기 F,T,N
위험 카페고리 넘버 11-23/24/25-50/53-29
안전지침서 16-36/37/39-45-8-57-36/37-29
유엔번호(UN No.) UN 1992 3/PG 2
WGK 독일 3
F 고인화성물질 10-33
자연 발화 온도 300 °C
TSCA Yes
위험 등급 3
포장분류 II
HS 번호 29310095
기존화학 물질 KE-01979
그림문자(GHS): GHS hazard pictogramsGHS hazard pictograms
신호 어: Danger
유해·위험 문구:
암호 유해·위험 문구 위험 등급 범주 신호 어 그림 문자 P- 코드
H225 고인화성 액체 및 증기 인화성 액체 구분 2 위험 GHS hazard pictograms P210,P233, P240, P241, P242, P243,P280, P303+ P361+P353, P370+P378,P403+P235, P501
예방조치문구:
P210 열·스파크·화염·고열로부터 멀리하시오 - 금연 하시오.
P280 보호장갑/보호의/보안경/안면보호구를 착용하시오.
NFPA 704
3
3 1
W

아지도트리메틸실란 MSDS


Trimethylsilyl azide

아지도트리메틸실란 C화학적 특성, 용도, 생산

화학적 성질

clear colorless to slightly yellow liquid

물리적 성질

bp 95–96°C; n20 D 1.416; d 0.868 g cm?3; fp23°C; IR νmax 2100 cm?1; 1H NMR (CDCl3) δ = 0.22.

용도

Many applications of TMSA in organic synthesis have been reported but only representative examples are described herein. Substitution Reactions. Benzyl,allyl,and substituted alkyl halides are converted to the corresponding azides in 60–100% yields via reactions with TMSA under neutral conditions in a nonaqueous solvent (eq 1).By using tin(IV) chloride as a catalyst, secondary and tertiary cyclic and polycyclic halides are similarly transformed into the corresponding azides in 50–92% yields (eq 1). Substitution Reactions of Azidotrimethylsilane

제조 방법

several methods for the synthesis of this azide have been reported.The procedure involving aluminum chloride is not recommended, since an explosive product is formed.Azidotrimethylsilane is now commercially available, and a representative synthetic procedure is as follows. A mixture of sodium azide and chlorotrimethylsilane is refluxed in di-n-butyl ether for 2 days and the azide is safely distilled directly from the reaction vessel. Purer compound (99% content) is obtained by redistillation of the product. Several improved conditions have been reported for the preparation of this azide.In these procedures, trimethylsilyl chloride is reacted with sodium azide either neat or in a high boiling point solvent, such as a mixture of silicone oil and polyethylene glycol. Distillation of the crude product usually provides trimethylsilyl azide (TMSA) in high purity (97.9%) and yield (97%).

Purification Methods

Distil the azide through a Vigreux column (p 11) in a N2 atmosphere maintaining the oil bath temperature thermostat at 135-140o . Check the purity by 1H NMR [CHCl3, : single peak at 13cps from Me4Si]. Likely impurities are siloxane hydrolysis products. The azide is thermally stable even at 200o when it decomposes slowly without explosive violence. All the same, it is advisable to carry out the distillation behind a thick safety screen in a fumehood because unforseen EXPLOSIVE azides may be formed on long standing. [Birkofer & Wagner Org Synth Coll Vol VI 1030 1988.]

아지도트리메틸실란 준비 용품 및 원자재

원자재

준비 용품


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