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Key Documents

569615

Sigma-Aldrich

(3-Chloropropyl)triethoxysilane

95%

Synonym(s):

(gamma-Chloropropyl)triethoxysilane, 3-(Triethoxysilyl)-1-chloropropane, 3-(Triethoxysilyl)propyl chloride, 3-Chloropropropyltriethoxysilane

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About This Item

Linear Formula:
ClCH2CH2CH2Si(OCH2CH3)3
CAS Number:
Molecular Weight:
240.80
Beilstein:
1754992
EC Number:
MDL number:
UNSPSC Code:
12352103
PubChem Substance ID:
NACRES:
NA.22

Assay

95%

refractive index

n20/D 1.418 (lit.)

density

1.000 g/mL at 25 °C (lit.)

SMILES string

CCO[Si](CCCCl)(OCC)OCC

InChI

1S/C9H21ClO3Si/c1-4-11-14(12-5-2,13-6-3)9-7-8-10/h4-9H2,1-3H3

InChI key

KSCAZPYHLGGNPZ-UHFFFAOYSA-N

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Pictograms

Flame

Signal Word

Warning

Hazard Statements

Hazard Classifications

Flam. Liq. 3

Storage Class Code

3 - Flammable liquids

WGK

WGK 1

Flash Point(F)

98.6 °F

Flash Point(C)

37 °C


Certificates of Analysis (COA)

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Younes Ellahioui et al.
Dalton transactions (Cambridge, England : 2003), 48(18), 5940-5951 (2018-09-14)
A series of nanomaterials based on mesoporous silica have been synthesised and functionalised with a photoactive polypyridyl ruthenium(ii) complex, namely [Ru(bipy)2-dppz-7-hydroxymethyl][PF6]2 (bipy = 2,2'-bipyridine, dppz = dipyrido[3,2-a:2',3'-c]phenazine), by various methods. The functionalisation reactions were based on the covalent binding to
Kheibar Dashtian et al.
Journal of colloid and interface science, 494, 114-123 (2017-02-06)
A selective adsorbent based on the modification of mesoprous SBA-15 with N,N'-bis(salicylidene)-1,3-ethylenediamine Schiff base and decorated with Fe
Minghua Lu
The Analyst, 142(18), 3477-3483 (2017-08-23)
An electrochemical sensing platform was designed to monitor telomerase activity in HeLa cells, using bioresponsively controlled cargo release from magnetic mesoporous silica nanocontainers (MMSNs). The aminated MMSNs were first synthesized by a wet-chemistry method, then methylene blue (indicator) molecules were
Nicholas G Fischer et al.
Coatings (Basel, Switzerland), 10(6) (2020-08-29)
Many chemical routes have been proposed to immobilize peptides on biomedical device surfaces, and in particular, on dental implants to prevent peri-implantitis. While a number of factors affect peptide immobilization quality, an easily controllable factor is the chemistry used to
Lin Zhou et al.
Colloids and surfaces. B, Biointerfaces, 160, 581-588 (2017-10-14)
The inflammatory reaction around the implant after implant placement is important not only for osseointegration but also for long-term implant survivals. In our study, GL13K, an antimicrobial peptide, was immobilized onto titanium surfaces to improve its anti-inflammatory properties. The method

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