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Merck
CN

471364

Sigma-Aldrich

1-十二烷硫醇

≥98%

别名:

1-巯基代十二烷, NDM, 十二硫醇, 月桂硫醇, 正十二硫醇

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About This Item

线性分子式:
CH3(CH2)11SH
CAS号:
分子量:
202.40
Beilstein:
969337
EC 号:
MDL编号:
UNSPSC代码:
12352103
PubChem化学物质编号:
NACRES:
NA.23

蒸汽密度

7 (vs air)

质量水平

检测方案

≥98%

折射率

n20/D 1.459 (lit.)

bp

266-283 °C (lit.)

密度

0.845 g/mL at 25 °C (lit.)

SMILES字符串

CCCCCCCCCCCCS

InChI

1S/C12H26S/c1-2-3-4-5-6-7-8-9-10-11-12-13/h13H,2-12H2,1H3

InChI key

WNAHIZMDSQCWRP-UHFFFAOYSA-N

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一般描述

1-十二烷硫醇(DDT)是可形成自组装单层膜(SAM)的烷基硫醇,可用作具有平衡理化性质的有机硫醇源。

应用

DDT可用作合成CdS量子点(QD)和硫化铅纳米颗粒(PbS)的硫醇来源,可能应用于节能照明、太阳能电池和铵气传感剂。这种成分可用于在铜表面形成自组装单层膜(SAM),充当耐腐蚀涂层。DDT官能化可能会在锗(Ge)上形成SAM,从而改善未来微电子学应用的表面特性。
该分子可用于生产疏水性SAM。此外,它还可用于混合SAM,以提供疏水性背景,并充当拉大与其他官能团或结构域距离的间隔臂。

警示用语:

Danger

危险声明

危险分类

Aquatic Acute 1 - Aquatic Chronic 1 - Eye Dam. 1 - Skin Corr. 1C - Skin Sens. 1A

WGK

WGK 3

个人防护装备

Eyeshields, Faceshields, Gloves, type ABEK (EN14387) respirator filter

法规信息

危险化学品

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Pham Hong Phong et al.
Langmuir : the ACS journal of surfaces and colloids, 21(23), 10581-10586 (2005-11-03)
Ternary self-assembled monolayers (SAM) composed of 2-aminoethanethiol (AET), 2-mercaptoethanesulfonic acid (MES), and 1-dodecanethiol (DDeT) form two types of domains as if it were a two-component SAM: DDeT-rich hydrophobic domains and electrostatically stabilized hydrophilic domains composed of MES and AET on
Synthesis and characterization of PbS nanoparticles in an ionic liquid using single and dual source precursors.
Tshemese Z, et al.
Materials Science and Engineering, B, 227(7), 116-121 (2018)
Functions of 1-Dodecanethiol in the Synthesis and Post-treatment of Copper Sulfide Nanoparticles Relevant to Their Photocatalytic Applications.
Lihui C and Guohua L
ACS Applied Nano Materials, 1(9), 4587?4593-4587?4593 (2018)
Synthesis, characterization and application of lead sulfide nanostructures as ammonia gas sensing agent.
Hassan K, et al.
International Journal of Electrochemical Science, 8(10), 11661-11679 (2013)
Marta Gambucci et al.
Soft matter, 15(32), 6571-6580 (2019-08-01)
The comprehension and control of the interactions between nanoparticles and proteins at a molecular level are crucial to improve biomedical applications of nanomaterials and to develop nanosystems able to influence and regulate the conformational changes in proteins. In this work

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