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4,7,10,13,16,19,22,25,32,35,38,41,44,47,50,53-Hexadecaoxa-28,29-dithiahexapentacontanedioic acid_Molecular_structure_CAS_873013-93-5)
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4,7,10,13,16,19,22,25,32,35,38,41,44,47,50,53-Hexadecaoxa-28,29-dithiahexapentacontanedioic acid

Catalog No. 671525 Name Sigma Aldrich
CAS Number 873013-93-5 Website http://www.sigmaaldrich.com
M. F. C38H74O20S2 Telephone 1-800-521-8956
M. W. 915.11216 Fax
Purity ≥95% (oligomer purity) Email
Storage Chembase ID: 140368

SYNONYMS

Title
4,7,10,13,16,19,22,25,32,35,38,41,44,47,50,53-十六烷氧杂-28,29-二硫杂五十六烷二酸
IUPAC name
4,7,10,13,16,19,22,25,32,35,38,41,44,47,50,53-hexadecaoxa-28,29-dithiahexapentacontanedioic acid
IUPAC Traditional name
4,7,10,13,16,19,22,25,32,35,38,41,44,47,50,53-hexadecaoxa-28,29-dithiahexapentacontanedioic acid
Synonyms
PEG 酸二硫醚(聚合度为 7)
PEG propionate disulfide
PEG acid disulfide (n=7)

DATABASE IDS

CAS Number 873013-93-5
MDL Number MFCD08274609

PROPERTIES

Empirical Formula (Hill Notation) C38H74O20S2
Purity ≥95% (oligomer purity)
Purity ≥95%
MSDS Link Download
Personal Protective Equipment Eyeshields, Gloves, type N95 (US), type P1 (EN143) respirator filter
Storage Temperature -20°C
German water hazard class 3

DETAILS

Description (English)
Packaging
100, 500 mg in poly bottle
Application
Reactant for:
• Preparation of orthogonally dual-clickable Janus nanoparticles via cyclic templating strategy1
• Preparation of cyclic RGD functionalized gold nanoparticles for tumor targeting2
• Asymmetric-functionalized nanoparticle with orthogonal clickable functionalities3
• Functional immobilization of small GTPase Rab6A on DNA-gold nanoparticles by using a site-specifically attached poly(ethylene glycol) linker and thiol-place exchange reaction4
• Direct writing of metal nanoparticle films inside sealed microfluidic channels in relation to biofunctionalization with ligands for protein capture and fluorescence assay5
Description (简体中文)
包装
100, 500 mg in poly bottle
Application
Reactant for:
• Preparation of orthogonally dual-clickable Janus nanoparticles via cyclic templating strategy1
• Preparation of cyclic RGD functionalized gold nanoparticles for tumor targeting2
• Asymmetric-functionalized nanoparticle with orthogonal clickable functionalities3
• Functional immobilization of small GTPase Rab6A on DNA-gold nanoparticles by using a site-specifically attached poly(ethylene glycol) linker and thiol-place exchange reaction4
• Direct writing of metal nanoparticle films inside sealed microfluidic channels in relation to biofunctionalization with ligands for protein capture and fluorescence assay5

REFERENCES