CHROMCHENKOVA, E.P.,
BOKOV, D.O.,
BESSONOV, V.V.,
SAMYLINA, I.A.,
KAKHRAMANOVA, S.D.,
CHEVIDAEV, V.V.,
SOKHIN, D.M.,
BALOBANOVA, N.P.,
EVGRAFOV, A.A.,
KRASNYUK, J.I.,
KUDASHKINA, N.V.,
GALIAKHMETOVA, E.K.,
MARAKHOVA, A.I.,
MOISEEV, D.V. (2020) of primary
amines) and with fluorenylmethyloxycarbonyl (FMOC) (secondary
amines). The sources of scientific
reaction of it with an
amine). Furthermore, the dicyclohexylurea formed if DCC is used contaminates
Tsypysheva, I.P.,
Kovalskaya, A.V.,
Lobov, A.N.,
Makara, N.S.,
Petrova, P.R.,
Farafontova, E.I.,
Zainullina, L.F.,
Vakhitova, Yu.V.,
Zarudii, F.S. (2015) of secondary
amines. The nootropic activity of the synthesized compounds was studied in vivo (mnestic
Gurevich, K.G.,
Urakov, A.L.,
Khaliullin, F.A.,
Samorodov, A.V.,
Shabalina, Y.V.,
Kamilov, F.K.,
Murataev, D.Z.,
Bashirova, L.I. (2020) )xanth- 8-ylthio]acetic acids with
amines (diethylamine, monoethanolamine, diethanolamine, triethanolamine
GUREVICH, K.G.,
URAKOV, A.L.,
KHALIULLIN, F.A.,
SAMORODOV, A.V.,
SHABALINA, Y.V.,
KAMILOV, F.KH.,
MURATAEV, D.Z.,
BASHIROVA, L.I. (2020) )xanth- 8-ylthio]acetic acids with
amines (diethylamine, monoethanolamine, diethanolamine, triethanolamine
Макара, Н.С.,
Вахитова, Ю.В.,
Зарудий, Ф.С.,
Tsypysheva, I.P.,
Kovalskaya, A.V.,
Lobov, A.N.,
Petrova, P.R.,
Farafontova, E.I.,
Zainullina, L.F.,
Makara N.S.,
Vakhitova, Yu.V.,
Zarudii, F.S. (2015) of secondary
amines. The nootropic activity of the synthesized compounds was studied in vivo (mnestic
Gurevich, KG,
Urakov, AL,
Rozit, GA,
Klen, EE,
Samorodov, AV,
Khaliullin, FA (2021) III and IV with alkali-metal hydroxides and
amines. The structures of the synthesized compounds were
AKHMETOVA, V.R.,
AKHMADIEV, N.S.,
NURTDINOVA, G.M.,
GALIMOVA, R.A.,
GALIMOVA, A.M.,
AGLETDINOV, E.F.,
KATAEV, V.A.,
KHISAMUTDINOV, R.A. (2018) ,ωdithiols, then the resulting α,ω-bis(1,3-diketone-2-ylmethylsulfanyl)alkanes were
transformed by hydroxyl
amine to obtain bis