Gadzekpo, V P Y’s team published research in Analytical Chemistry in 1986 | 5326-82-9

Analytical Chemistry published new progress about Diamides. 5326-82-9 belongs to class amides-buliding-blocks, and the molecular formula is C10H20ClNO, Product Details of C10H20ClNO.

Gadzekpo, V. P. Y.; Hungerford, J. M.; Kadry, A. M.; Ibrahim, Y. A.; Xie, R. Y.; Christian, Gary D. published the artcile< Comparative study of neutral carriers in polymeric lithium ion selective electrodes>, Product Details of C10H20ClNO, the main research area is ionophore lithium selective electrode; lipophilic diamide ionophore lithium selective electrode; pyridine diamide ionophore lithium selective electrode; furan diamide ionophore lithium selective electrode; dioxanonane diamide ionophore lithium selective electrode; polyether diamide ionophore lithium selective electrode; ether diamide ionophore lithium selective electrode.

New lipophilic diamide compounds were synthesized and tested as ionophores for Li in poly(vinyl chloride) (PVC) membrane electrodes, including compounds with pyridine, furan, dioxanonane, and polyether backbones with different lipophilic diamide groups. The new ionophores were compared with previously reported ionophores under similar measurement conditions with the same plasticizer, tris(2-ethylhexyl) phosphate, in all membranes. Fixed interference and matched potential methods were used to determine relative selectivity coefficients for all the electrodes. The highest selectivity for Li relative to Na was obtained with N,N-dicyclohexyl-N’,N’-diisobutyl-cis-cyclohexane-1,2-dicarboxamide (140:1) and the 14-crown-4 ether, 3-dodecyl-3-methyl-1,5,8,12-tetraoxacyclotetradecane (125:1) when using NPOE (o-nitrophenyl octyl ether) plasticizer. The latter exhibited faster response at low Li concentrations It exhibited consistently high selectivity using different measurement methods and was stable for 5 mo.

Analytical Chemistry published new progress about Diamides. 5326-82-9 belongs to class amides-buliding-blocks, and the molecular formula is C10H20ClNO, Product Details of C10H20ClNO.

Referemce:
Amide – Wikipedia,
Amide – an overview | ScienceDirect Topics