130184-19-9Relevant articles and documents
Silver(I) Ion-selective Electrodes based on Polythiamacrocycles
Casabo, Jaume,Mestres, Lourdes,Escriche, Lluis,Teixidor, Francesc,Perez-Jimenez, Consuelo
, p. 1969 - 1972 (1991)
Some polythiamacrocycles having aromatic rings as macrocyclic components have been synthesised and tested as sensors in solid-state electrodes.High selectivity for Ag(1+), even over that for Hg(2+), and excellent electrode properties have been found.
Silver(I) Ion Electrode Based on Dithiamacrocycles
Casabo, Jaume,Perez-Jimenez, Consuelo,Escriche, Lluis,Alegret, Salvador,Martinez-Fabregas, Esteve,Teixidor, Francesc
, p. 1107 - 1108 (1990)
Poly(vinyl chloride) membrane all solid state electrode based on the macrocyclic polythiaether 6-oxa-3,9-dithiabicycle-pentadeca-1(15)-11,13-triene, has been developped.The electrode exhibits a Nernstian linear response to silver(I) ion from 10-6 to 10-1 M, good selectivity (no response for Hg(II) and short response time (10 s).
Silver ion carrier II synthesis method
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Paragraph 0014-0016, (2017/03/08)
The present invention discloses a silver ion carrier II synthesis method, which comprises: adding 600 ml of n-butanol and KOH to a three-necked reaction flask, dissolving dichloro-m-xylene and bis(2-mercaptoethyl)ether respectively with 50 ml of n-butanol, concurrently adding to the reaction flask in a dropwise manner within 1 h, carrying out a reaction overnight at a room temperature, vacuumizing, carrying out rotary drying on the reaction liquid, and carrying out chromatography silica gel column purification to obtain the white solid silver ion carrier II, wherein a molar ratio of the KOH to the dichloro-m-xylene to the bis(2-mercaptoethyl)ether is 2:1:1. According to the present invention, the yield of the synthesized silver ion carrier II is high, the crystallization effect is good, the purity is high, and the high-purity standard sample or sample is provided for the subsequent chemical and biological experiments.