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192440-64-5

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192440-64-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 192440-64-5 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,9,2,4,4 and 0 respectively; the second part has 2 digits, 6 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 192440-64:
(8*1)+(7*9)+(6*2)+(5*4)+(4*4)+(3*0)+(2*6)+(1*4)=135
135 % 10 = 5
So 192440-64-5 is a valid CAS Registry Number.

192440-64-5Downstream Products

192440-64-5Relevant articles and documents

Deltamides and Croconamides: Expanding the Range of Dual H-bond Donors for Selective Anion Recognition

Zwicker, Vincent E.,Yuen, Karen K. Y.,Smith, David G.,Ho, Junming,Qin, Lei,Turner, Peter,Jolliffe, Katrina A.

, p. 1140 - 1150 (2018)

Dual H-bond donors are widely used as recognition motifs in anion receptors. We report the synthesis of a library of dual H-bond receptors, incorporating the deltic and croconic acid derivatives, termed deltamides and croconamides, respectively, and a comparison of their anion binding affinities (for monovalent species) and Br?nsted acidities to those of the well-established urea and squaramide dual H-bond donor motifs. For dual H-bonding cores with identical substituents, the trend in Br?nsted acidity is croconamides>squaramides>deltamides>ureas, with the croconamides found to be 10–15 pKa units more acidic than the corresponding ureas. In contrast to the trends displayed by ureas, deltamides and squaramides, N,N′-dialkyl croconamides displayed higher binding affinity to chloride than the N,N′-diaryl derivatives, which was attributed to partial deprotonation of the N,N′-diaryl derivatives at neutral pH. A number of differences in anion binding selectivity were observed upon comparison of the dual H-bond cores. Whereas the squaramides display similar affinity for both chloride and acetate ions, the ureas have significantly higher affinity for acetate than chloride ions and the deltamides display higher affinity for dihydrogenphosphate ions than other oxoanions or halides. These inherent differences in binding affinity could be exploited in the design of anion receptors with improved ability to discriminate between monovalent anions.

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