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1,29-bis(tosyloxy)-3,6,9,12,15,18,21,24,27-nonaoxanonacosane is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

109635-65-6

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109635-65-6 Usage

Chemical structure

A synthetic chemical compound with a long hydrocarbon chain and multiple tosylate groups.

Hydrocarbon chain

Consists of 29 oxygen atoms interspersed with methylene groups.

Non-naturally occurring

Typically synthesized in a laboratory setting.

Tosylate groups

Known for their reactivity and ability to undergo various chemical reactions.

Application

Useful in organic synthesis as a building block or intermediate for the production of other compounds.

Handling

Should be handled with caution due to its potential reactivity and the toxic nature of tosylate groups.

Check Digit Verification of cas no

The CAS Registry Mumber 109635-65-6 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,0,9,6,3 and 5 respectively; the second part has 2 digits, 6 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 109635-65:
(8*1)+(7*0)+(6*9)+(5*6)+(4*3)+(3*5)+(2*6)+(1*5)=136
136 % 10 = 6
So 109635-65-6 is a valid CAS Registry Number.

109635-65-6Downstream Products

109635-65-6Relevant academic research and scientific papers

Design, Synthesis, and Pharmacological Characterization of Heterobivalent Ligands for the Putative 5-HT2A/mGlu2Receptor Complex

Poulie, Christian B. M.,Liu, Na,Jensen, Anders A.,Bunch, Lennart

, p. 9928 - 9949 (2020/09/12)

We report the synthesis of the first series of heterobivalent ligands targeting the putative heteromeric 5-HT2A/mGlu2 receptor complex, based on the 5-HT2A antagonist MDL-100,907 and the mGlu2 ago-PAM JNJ-42491293. The functional properties of monovalent and heterobivalent ligands were characterized in 5-HT2A-, mGlu2/Gqo5-, 5-HT2A/mGlu2-, and 5-HT2A/mGlu2/Gqo5-expressing HEK293 cells using a Ca2+ imaging assay and a [3H]ketanserin binding assay. Pronounced functional crosstalk was observed between the two receptors in 5-HT2A/mGlu2 and 5-HT2A/mGlu2/Gqo5 cells. While the synthesized monovalent ligands retained the 5-HT2A antagonist and mGlu2 ago-PAM functionalities, the seven bivalent ligands inhibited 5-HT-induced responses in 5-HT2A/mGlu2 cells and both 5-HT- and Glu-induced responses in 5-HT2A/mGlu2/Gqo5 cells. However, no definitive correlation between the functional potency and spacer length of the ligands was observed, an observation substantiated by the binding affinities exhibited by the compounds in 5-HT2A, 5-HT2A/mGlu2, and 5-HT2A/mGlu2/Gqo5 cells. In conclusion, while functional crosstalk between 5-HT2A and mGlu2 was demonstrated, it remains unclear how these heterobivalent ligands interact with the putative receptor complex.

RADIATION CURABLE INKJET INKS FOR INTERIOR DECORATION

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Paragraph 0252, (2020/08/13)

A radiation curable inkjet ink containing at least one or two compounds selected from the group consisting of a polymerizable compound including a vinylether group or a vinylamide group, an amine synergist including an alkanolamine group or a dimethyl ben

π-Conjugated polymer-Eu3+ complexes: Versatile luminescent molecular probes for temperature sensing

Balamurugan,Reddy,Jayakannan

, p. 2256 - 2266 (2013/07/31)

We report π-conjugated polymer-Eu3+ ion complexes as new potential luminescent thermo-sensitive molecular probes. Carboxylic acid functionalized segmented π-conjugated polymers having oligophenylenevinylene (OPV) chromophores in the poly(ethyleneoxide) or polymethylene backbones were custom designed, synthesized and utilized as efficient photosensitizers for Eu3+ ions. These π-conjugated polymer-Eu3+ ion complexes were found to be thermo-sensitive and behaved as reversible 'turn-on' or 'turn-off' luminescent switches in solution and in solid state. Luminescent decay studies revealed that the red-emission from the Eu3+ ion excited state was highly sensitive to temperature which drove the functioning of optical switches. The decay rate constants followed a typical Arrhenius trend over a wide temperature range having similar activation energies. Both the nature as well as length of the segmented polymer chain that tied the OPV optical chromophores in the backbone determine the temperature range of the luminescent on-off process. The emission characteristics of the oligomer-Eu 3+ ion complex were found to be non-thermosensitive which emphasized the need for the segmented π-conjugated polymer ligand structure for the probes based on Eu3+ ion complexes. The present strategy opens up new concept and molecular design principles for π-conjugated polymer-lanthanide ion complexes as potential candidates for temperature sensitive luminescent molecular probes. The Royal Society of Chemistry 2013.

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