트리메틸포스핀

트리메틸포스핀
트리메틸포스핀 구조식 이미지
카스 번호:
594-09-2
한글명:
트리메틸포스핀
동의어(한글):
트리메틸포스핀
상품명:
Trimethylphosphine
동의어(영문):
PMe3;(CH3)3P;Methyl phosphine;rimethylphosphine;TRIMETHYLPHOSPHINE;Trimethylphosphorus;Trimethyl-phosphane;PHOSPHORUS TRIMETHYL;Trimethylphosphine,99%;TriMethylphosphine 97%
CBNumber:
CB1458857
분자식:
C3H9P
포뮬러 무게:
76.08
MOL 파일:
594-09-2.mol
MSDS 파일:
SDS

트리메틸포스핀 속성

녹는점
-86 °C (lit.)
끓는 점
38-40 °C (lit.)
밀도
0.738 g/mL at 20 °C (lit.)
증기압
7.24 psi ( 20 °C)
굴절률
n20/D 1.428(lit.)
인화점
−4 °F
저장 조건
2-8°C
용해도
Insoluble[in water]
물리적 상태
액체
색상
무색의
Specific Gravity
0.748
수용성
물에 용해됩니다.
감도
Air & Moisture Sensitive
BRN
969138
InChIKey
YWWDBCBWQNCYNR-UHFFFAOYSA-N
CAS 데이터베이스
594-09-2(CAS DataBase Reference)
NIST
Phosphine, trimethyl-(594-09-2)
안전
  • 위험 및 안전 성명
  • 위험 및 사전주의 사항 (GHS)
위험품 표기 F,Xn,Xi
위험 카페고리 넘버 11-36/37/38-67-65-63-48/20-38-17-40-36/37-19
안전지침서 9-16-26-36/37/39-62-36/37-7/9-33
유엔번호(UN No.) UN 1993 3/PG 2
WGK 독일 3
F 고인화성물질 10-13-23
위험 등급 4.2
포장분류 I
HS 번호 29319090
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
H315 피부에 자극을 일으킴 피부부식성 또는 자극성물질 구분 2 경고 GHS hazard pictograms P264, P280, P302+P352, P321,P332+P313, P362
H319 눈에 심한 자극을 일으킴 심한 눈 손상 또는 자극성 물질 구분 2A 경고 GHS hazard pictograms P264, P280, P305+P351+P338,P337+P313P
H335 호흡 자극성을 일으킬 수 있음 특정 표적장기 독성 - 1회 노출;호흡기계 자극 구분 3 경고 GHS hazard pictograms
예방조치문구:
P210 열·스파크·화염·고열로부터 멀리하시오 - 금연 하시오.
P302+P352 피부에 묻으면 다량의 물로 씻으시오.
P305+P351+P338 눈에 묻으면 몇 분간 물로 조심해서 씻으시오. 가능하면 콘택트렌즈를 제거하시오. 계속 씻으시오.
NFPA 704
4
3 0

트리메틸포스핀 MSDS


Trimethylphosphine

트리메틸포스핀 C화학적 특성, 용도, 생산

화학적 성질

Clear colorless liquid

용도

Trimethylphosphine (PMe3) is an electron-rich phosphine ligand used as a reagent in Mitsunobu reaction.
It can be used:

일반 설명

Trimethylphosphine is the reagent used in Mitsunobu reaction. It participates in the transformation of azides into carbamates, aziridines from azidoalcohols, iminophosphoranes and aza-Wittig reaction. Electron diffraction study of trimethylphosphine has been reported.

Purification Methods

All operations should be carried out in an efficient fume cupboard because it is flammable, toxic and has a foul odor. Distil trimethylphosphine at atmospheric pressure in a stream of dry N2 (apparatus should be held together with springs to avoid loss of gas from increased pressure in the system) and the distillate run into a solution of AgI in aqueous KI whereby the silver complex [Me3PAgI]4 separates steadily. Filter off the complex, wash it with saturated aqueous KI solution, then H2O and dry it in a vacuum desiccator over P2O5. The dry complex is heated in a flask (in a stream of dry N2) in an oil bath at 140o, when pure Me3P distils off (bath temperature can be raised up to 260o). The vapour pressure of Me3P at 20o is 466mm and the b is 37.8o [Thomas & Eriks Inorg Synth IX 59 1967]. Alternatively, freshly distilled Me3P (6g) is shaken with a solution of AgI (13.2g, 1.1mol) in saturated aqueous KI solution (50mL) for 2hours. A white solid, not wetted with H2O, separates rapidly. It is collected, washed with the KI solution, H2O, and dried [Mann et al. J Chem Soc 1829 1937]. The silver complex is stable if kept dry in the dark, in which state it can be kept indefinitely. Me3P can be generated from the complex when required. Store it under N2 in a sealed container. It has been distilled in a vacuum line at -78o in vacuo and condensed at -96o [IR and NMR: Crosbie & Sheldrick J Inorg Nucl Chem 31 3684 1969]. The pK2 2 by NMR was 8.80 [Silver & Lutz J Am Chem Soc 83 786 1961, pK2 5 8.65: Henderson & Strueuli J Am Chem Soc 82 5791 1960].

트리메틸포스핀 준비 용품 및 원자재

원자재

준비 용품


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