추천 제품
vapor density
0.71 (vs air)
Quality Level
분석
≥95.0% (GC)
형태
liquid
autoignition temp.
482 °F
refractive index
n20/D 1.444 (lit.)
n20/D 1.445
bp
314.4 +/- 5.0 °C/760 mmHg (lit.)
179 °C/15 mmHg (lit.)
314.4 °C±5.0 °C/760 mmHg (lit.)
mp
14-16 °C (lit.)
density
0.789 g/mL at 25 °C (lit.)
SMILES string
CCCCCCCCCCCCCCCCC=C
InChI
1S/C18H36/c1-3-5-7-9-11-13-15-17-18-16-14-12-10-8-6-4-2/h3H,1,4-18H2,2H3
InChI key
CCCMONHAUSKTEQ-UHFFFAOYSA-N
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관련 카테고리
일반 설명
The copolymerization of ethylene and 1-octadecene using a bridged metallocene has been studied. Monolayers of 1-octadecene were attached on a hydrogen-terminated (111) silicon surface via free-radical reaction.
애플리케이션
1-Octadecene may be used in the preparation of monodisperse CuPd alloy nanoparticles (NPs). It may be used in the synthesis of magnetite nanocrystals.
신호어
Danger
유해 및 위험 성명서
예방조치 성명서
Hazard Classifications
Asp. Tox. 1
보충제 위험성
Storage Class Code
10 - Combustible liquids
WGK
WGK 3
Flash Point (°F)
300.2 °F - closed cup
Flash Point (°C)
149.00 °C - closed cup
개인 보호 장비
Eyeshields, Gloves
시험 성적서(COA)
제품의 로트/배치 번호를 입력하여 시험 성적서(COA)을 검색하십시오. 로트 및 배치 번호는 제품 라벨에 있는 ‘로트’ 또는 ‘배치’라는 용어 뒤에서 찾을 수 있습니다.
이미 열람한 고객
Synthesis and characterization of copolymers of ethylene and 1-octadecene using the rac-Et (Ind) 2ZrCl2/MAO catalyst system.
Macromol. Chem. Rapid Commun., 200(6), 1306-1310 (1999)
The effect of nanocrystalline magnetite size on arsenic removal.
Science and Technology of Advanced Materials, 8(1), 71-75 (2007)
1-octadecene monolayers on Si (111) hydrogen-terminated surfaces: Effect of substrate doping.
Journal of Applied Physics, 96(3), 1529-1536 (2004)
ACS applied materials & interfaces, 7(5), 3199-3206 (2015-01-17)
Monodisperse CuPd alloy nanoparticles (NPs) were prepared by using a typical high-temperature organic solution phase protocol comprising the coreduction of copper(II) acetylacetonate and palladium(II) acetylacetonate by morpholine-borane complex in oleylamine and 1-octadecene solution at 80 °C. The presented synthesis protocol
ACS nano, 13(10), 11122-11128 (2019-09-21)
Colloidal quantum dots (CQDs) allow broad tuning of the bandgap across the visible and near-infrared spectral regions. Recent advances in applying CQDs in light sensing, photovoltaics, and light emission have heightened interest in achieving further synthetic improvements. In particular, improving
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