882304-68-9Relevant academic research and scientific papers
Spectrophotometric study of complexation of Tri-Aza dibenzosulfide and dibenzosulfoxide macrocyclic compounds with heavy metal ions
Mozaffari, Shahla,Chaloosi, Marzieh,Divsar, Faten,Abouzari-Lotf, Ebrahim,Bavili, Samad T.,Yousefi, Ali,Shockravi, Abbas
, p. 2439 - 2448 (2007)
The complexation reactions between 7,10,13-triaza-1-thia-4,16-dioxa-20,24- dimethyl-2,3;17,18-dibenzo-cyclooctadecane-6,14-dione (TTD) and 7,10,13-triaza-1-sulfoxo-4,16-dioxa-20,24-dimethyl-2,3;17,18-dibenzo- cyclooctadecane-6,14-dione (TSD) macrocycles w
Synthesis of some new dimers as constructive of nano machines
Ebadi, Abdol Ghaffar,Alami, Somaye
, p. 1298 - 1300 (2013/06/26)
In this research work, a part of nano machines is synthesized, based on interlocked macrocycle named rotaxanes, pseudorotaxanes, knots and catenanes which constitute any passive or active structure capable of actuation, mesoscale molecular electronic devi
Synthesis of some new ligands as drug carrier
Mahmod, Nikkhoo-Amiry,Alami, Somaye,Ebadi, Abdol Ghaffar
experimental part, p. 4681 - 4683 (2012/03/09)
In this research work, the preparation of new biscrown ether and lariat ether compounds as cationic and molecular acceptor are reported. For this purpose first, sulfoxide (1) was prepared by reaction of p-cresol with SOCl 2 in 65 % yield. Then
Efficient routes for the synthesis of dinaphthosulfide (BINOL Derivatives) and dibenzosulfide aza podands containing ethanolamine
Rostami, Esmael,Heidaryan, Davood,Fattahi, Hanif,Shockravi, Abbas,Zarei, Mehdi,Rakhshanderu, Farokh
experimental part, p. 1924 - 1934 (2010/02/28)
Four new dinaphthosulfide and dibenzosulfide aza podands were synthesized. The synthesis of these podands was performed under three different reaction conditions: 1) diester, K2CO3, methanol, and RT; 2) diester, ethanolamine, and microwave (MW); and 3) diacid dichloride, ethanolamine, Et3N, CH2Cl2, RT. Two kinds of diester (dinaphthosulfide and dibenzosulfide) were used for the preparation of dihydroxy podands. These dihydroxy podands were reacted with thionyl chloride to afford dichloro podands. The second route gave excellent yields of dihydroxy podands. Dichloro podands are more soluble than dihydroxy podands in conventional solvents such as methanol, chloroform, and acetonitrile.
