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Sodium acetylide suspension - 18 wt% in dimethylbenzene, high purity , CAS No.1066-26-8

    Grade & Purity:
  • 18 wt% in dimethylbenzene
In stock
Item Number
S100550
Grouped product items
SKU Size
Availability
Price Qty
S100550-25g
25g
Available within 4-8 weeks(?)
Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience!
$19.90
S100550-100g
100g
2
$59.90

Discover Sodium acetylide suspension by Aladdin Scientific in 18 wt% in dimethylbenzene for only $19.90. Available - in Ligands at Aladdin Scientific. Tags: .

Basic Description

Synonyms AKOS005258173 | DTXSID50910044 | FT-0746174 | monosodium acetylide | Ethynyl sodium | Sodium acetylide | Sodium ethyn-1-ide | ethynylsodium | EINECS 213-908-9 | Q17417384 | BCP26358 | sodium ethynide | MFCD00008568 | sodium;ethyne | SLBNQJAGYKQCKI-UHFFFAO
Specifications & Purity 18 wt% in dimethylbenzene
Storage Temp Store at 2-8°C,Argon charged
Shipped In
Wet ice
This product requires cold chain shipping. Ground and other economy services are not available.
Product Description

Sodium acetylide suspension has been used in the preparation of: 2-ethynyladamantan-2-ol1 apical-equatorial (ae) isomer of (Et4N)3[1-(2′-B10H9)-2-NH3B10H8]2 trimethylsilylacetylene3

Taxonomic Classification

Taxonomy Tree

Kingdom Organic compounds
Superclass Acetylides
Class Not available
Subclass Not available
Intermediate Tree Nodes Not available
Direct Parent Acetylides
Alternative Parents Organic sodium salts  Hydrocarbon derivatives  
Molecular Framework Aliphatic acyclic compounds
Substituents Acetylide - Hydrocarbon derivative - Organic sodium salt - Organic salt - Aliphatic acyclic compound
Description This compound belongs to the class of organic compounds known as acetylides. These are compounds arising by replacement of one or both hydrogen atoms of acetylene (ethyne) by a metal or other cationic group. E.g. NaC#CH monosodium acetylide. By extension, analogous compounds derived from terminal acetylenes, RC#CH. The class is limited here to derivatives of acetylene where the hydrogen atom is replaced with an element with similar or lower electronegativity that carbon.
External Descriptors organic sodium salt - acetylide

Names and Identifiers

IUPAC Name sodium;ethyne
INCHI InChI=1S/C2H.Na/c1-2;/h1H;/q-1;+1
InChIKey SFDZETWZUCDYMD-UHFFFAOYSA-N
Smiles C#[C-].[Na+]
Isomeric SMILES C#[C-].[Na+]
WGK Germany 3
PubChem CID 2733336
UN Number 3399
Molecular Weight 48.02
Beilstein 3587232

Certificates(CoA,COO,BSE/TSE and Analysis Chart)

C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:

Find and download the COA for your product by matching the lot number on the packaging.

11 results found

Lot Number Certificate Type Date Item
I2312632 Certificate of Analysis Jun 11, 2025 S100550
L2306229 Certificate of Analysis Nov 27, 2023 S100550
L2306268 Certificate of Analysis Nov 27, 2023 S100550
F2511042 Certificate of Analysis Oct 23, 2023 S100550
K2302467 Certificate of Analysis Oct 23, 2023 S100550
K2302465 Certificate of Analysis Oct 23, 2023 S100550
I2312631 Certificate of Analysis Aug 29, 2023 S100550
K2215709 Certificate of Analysis Sep 06, 2022 S100550
K2215706 Certificate of Analysis Sep 06, 2022 S100550
E2323015 Certificate of Analysis Sep 06, 2022 S100550
H2219147 Certificate of Analysis Jul 14, 2021 S100550

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Chemical and Physical Properties

Solubility Reacts with water.
Sensitivity Air & Moisture Sensitive
Flash Point(°F) 77 °F
Flash Point(°C) 29℃
Molecular Weight 48.020 g/mol
XLogP3
Hydrogen Bond Donor Count 0
Hydrogen Bond Acceptor Count 1
Rotatable Bond Count 0
Exact Mass 47.9976 Da
Monoisotopic Mass 47.9976 Da
Topological Polar Surface Area 0.000 Ų
Heavy Atom Count 3
Formal Charge 0
Complexity 10.800
Isotope Atom Count 0
Defined Atom Stereocenter Count 0
Undefined Atom Stereocenter Count 0
Defined Bond Stereocenter Count 0
Undefined Bond Stereocenter Count 0
The total count of all stereochemical bonds 0
Covalently-Bonded Unit Count 2

Citations of This Product

1. Yang Yue, Li Li, Baocheng Qu, Ying Liu, Xuankai Wang, Houyu Wang, Siyu Chen.  (2023)  Levels, consumption, and variations of eight artificial sweeteners in the wastewater treatment plants of Dalian city, China.  SCIENCE OF THE TOTAL ENVIRONMENT,  892  (163867). 
2. Xiaoyan Ma, Zhanghua Liu, Yulong Yang, Lidan Zhu, Jing Deng, Sijia Lu, Xueyan Li, Andrea M. Dietrich.  (2021)  Aqueous degradation of artificial sweeteners saccharin and neotame by metal organic framework material.  SCIENCE OF THE TOTAL ENVIRONMENT,  761  (143181). 
3. Jun Han, Xingyu Tang, Yida Wang, Yajie Wang, Yehua Han, Xiaohuan Lin, Xiao Dong, Hyun Hwi Lee, Haiyan Zheng, Kuo Li, Ho-kwang Mao.  (2019)  Pressure-Induced Polymerization of Monosodium Acetylide: A Radical Reaction Initiated Topochemically.  Journal of Physical Chemistry C,  123  (50): (30746–30753). 
4. Yao Tong, Zhanzhong Wang, Entao Yang, Bochen Pan, Leping Dang, Hongyuan Wei.  (2016)  Insights into Cocrystal Polymorphic Transformation Mechanism of Ethenzamide–Saccharin: A Combined Experimental and Simulative Study.  CRYSTAL GROWTH & DESIGN,  16  (9): (5118–5126). 
5. Yao Tong, Zhanzhong Wang, Leping Dang, Hongyuan Wei.  (2016)  Solid–liquid phase equilibrium and ternary phase diagrams of ethenzamide-saccharin cocrystals in different solvents.  FLUID PHASE EQUILIBRIA,  419  (24). 
6. Yao Tong, Peng Zhang, Leping Dang, Hongyuan Wei.  (2016)  Monitoring of cocrystallization of ethenzamide–saccharin: Insight into kinetic process by in situ Raman spectroscopy.  CHEMICAL ENGINEERING RESEARCH & DESIGN,  109  (249). 
7. Pin Dong,Ling Lin,Yongcheng Li,Zhengwei Huang,Tianqun Lang,Chuanbin Wu,Ming Lu.  (2015-03-26)  In-situ synchrotron wide-angle X-ray diffraction as a rapid method for cocrystal/salt screening..  International journal of pharmaceutics,  496  ((1)): (107-116). 

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