molecular formula C5H13Cl2NO2S B3218018 3-(Dimethylamino)propane-1-sulfonyl chloride hydrochloride CAS No. 118646-42-7

3-(Dimethylamino)propane-1-sulfonyl chloride hydrochloride

Cat. No. B3218018
M. Wt: 222.13 g/mol
InChI Key: BYKKHSIDBWTCTP-UHFFFAOYSA-N
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Description

3-(Dimethylamino)propane-1-sulfonyl chloride hydrochloride, commonly known as DMPSCl, is a chemical compound that is widely used in scientific research applications. It is a sulfonyl chloride derivative that is used in the synthesis of various organic compounds. DMPSCl is a white crystalline powder that is highly soluble in water and other polar solvents.

Mechanism Of Action

The mechanism of action of DMPSCl is related to its reactivity towards nucleophiles, such as amines and alcohols. DMPSCl reacts with nucleophiles to form sulfonamide or sulfonate ester derivatives, which are stable under a wide range of conditions. The reactivity of DMPSCl towards nucleophiles is due to the electron-withdrawing nature of the sulfonyl chloride group, which makes the carbon atom of the chloride group electrophilic.

Biochemical And Physiological Effects

There is limited information available on the biochemical and physiological effects of DMPSCl. However, it is known that DMPSCl is not toxic to cells and does not have any significant effects on cellular metabolism or growth. Additionally, DMPSCl is not known to have any significant effects on the immune system or other physiological processes.

Advantages And Limitations For Lab Experiments

DMPSCl has several advantages for lab experiments. It is a stable compound that is readily available from chemical suppliers. Additionally, DMPSCl is a versatile reagent that can be used in the synthesis of various organic compounds. However, there are also some limitations associated with the use of DMPSCl. It is a highly reactive compound that can be difficult to handle, particularly in aqueous solutions. Additionally, DMPSCl can be expensive, which may limit its use in some research applications.

Future Directions

There are several future directions for the use of DMPSCl in scientific research. One potential area of research is the development of new synthetic methods that use DMPSCl as a reagent. Additionally, DMPSCl may have potential applications in the synthesis of new pharmacological agents. Further research is needed to investigate the potential uses of DMPSCl in these and other areas.
Conclusion
DMPSCl is a versatile reagent that is widely used in scientific research applications. It is a stable compound that can be used in the synthesis of various organic compounds. Additionally, DMPSCl is a valuable tool for the selective protection of primary amines over secondary amines. While there are some limitations associated with the use of DMPSCl, it remains a valuable reagent for many research applications. Further research is needed to investigate the potential uses of DMPSCl in new synthetic methods and the development of new pharmacological agents.

Scientific Research Applications

DMPSCl is widely used in scientific research applications as a reagent for the synthesis of various organic compounds. It is used as a protecting group for amines, which allows for the selective protection of primary amines over secondary amines. DMPSCl is also used as a reagent for the synthesis of sulfonamides, which are important pharmacological agents. Additionally, DMPSCl is used in the synthesis of various other organic compounds, including amino acids, peptides, and nucleotides.

properties

IUPAC Name

3-(dimethylamino)propane-1-sulfonyl chloride;hydrochloride
Details Computed by LexiChem 2.6.6 (PubChem release 2019.06.18)
Source PubChem
URL https://pubchem.ncbi.nlm.nih.gov
Description Data deposited in or computed by PubChem

InChI

InChI=1S/C5H12ClNO2S.ClH/c1-7(2)4-3-5-10(6,8)9;/h3-5H2,1-2H3;1H
Details Computed by InChI 1.0.5 (PubChem release 2019.06.18)
Source PubChem
URL https://pubchem.ncbi.nlm.nih.gov
Description Data deposited in or computed by PubChem

InChI Key

BYKKHSIDBWTCTP-UHFFFAOYSA-N
Details Computed by InChI 1.0.5 (PubChem release 2019.06.18)
Source PubChem
URL https://pubchem.ncbi.nlm.nih.gov
Description Data deposited in or computed by PubChem

Canonical SMILES

CN(C)CCCS(=O)(=O)Cl.Cl
Details Computed by OEChem 2.1.5 (PubChem release 2019.06.18)
Source PubChem
URL https://pubchem.ncbi.nlm.nih.gov
Description Data deposited in or computed by PubChem

Molecular Formula

C5H13Cl2NO2S
Details Computed by PubChem 2.1 (PubChem release 2019.06.18)
Source PubChem
URL https://pubchem.ncbi.nlm.nih.gov
Description Data deposited in or computed by PubChem

Molecular Weight

222.13 g/mol
Details Computed by PubChem 2.1 (PubChem release 2021.05.07)
Source PubChem
URL https://pubchem.ncbi.nlm.nih.gov
Description Data deposited in or computed by PubChem

Product Name

3-(Dimethylamino)propane-1-sulfonyl chloride hydrochloride

CAS RN

118646-42-7
Record name 1-Propanesulfonyl chloride, 3-(dimethylamino)-, hydrochloride (1:1)
Source CAS Common Chemistry
URL https://commonchemistry.cas.org/detail?cas_rn=118646-42-7
Description CAS Common Chemistry is an open community resource for accessing chemical information. Nearly 500,000 chemical substances from CAS REGISTRY cover areas of community interest, including common and frequently regulated chemicals, and those relevant to high school and undergraduate chemistry classes. This chemical information, curated by our expert scientists, is provided in alignment with our mission as a division of the American Chemical Society.
Explanation The data from CAS Common Chemistry is provided under a CC-BY-NC 4.0 license, unless otherwise stated.
Record name 3-(dimethylamino)propane-1-sulfonyl chloride hydrochloride
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URL https://echa.europa.eu/information-on-chemicals
Description The European Chemicals Agency (ECHA) is an agency of the European Union which is the driving force among regulatory authorities in implementing the EU's groundbreaking chemicals legislation for the benefit of human health and the environment as well as for innovation and competitiveness.
Explanation Use of the information, documents and data from the ECHA website is subject to the terms and conditions of this Legal Notice, and subject to other binding limitations provided for under applicable law, the information, documents and data made available on the ECHA website may be reproduced, distributed and/or used, totally or in part, for non-commercial purposes provided that ECHA is acknowledged as the source: "Source: European Chemicals Agency, http://echa.europa.eu/". Such acknowledgement must be included in each copy of the material. ECHA permits and encourages organisations and individuals to create links to the ECHA website under the following cumulative conditions: Links can only be made to webpages that provide a link to the Legal Notice page.

Retrosynthesis Analysis

AI-Powered Synthesis Planning: Our tool employs the Template_relevance Pistachio, Template_relevance Bkms_metabolic, Template_relevance Pistachio_ringbreaker, Template_relevance Reaxys, Template_relevance Reaxys_biocatalysis model, leveraging a vast database of chemical reactions to predict feasible synthetic routes.

One-Step Synthesis Focus: Specifically designed for one-step synthesis, it provides concise and direct routes for your target compounds, streamlining the synthesis process.

Accurate Predictions: Utilizing the extensive PISTACHIO, BKMS_METABOLIC, PISTACHIO_RINGBREAKER, REAXYS, REAXYS_BIOCATALYSIS database, our tool offers high-accuracy predictions, reflecting the latest in chemical research and data.

Strategy Settings

Precursor scoring Relevance Heuristic
Min. plausibility 0.01
Model Template_relevance
Template Set Pistachio/Bkms_metabolic/Pistachio_ringbreaker/Reaxys/Reaxys_biocatalysis
Top-N result to add to graph 6

Feasible Synthetic Routes

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