II INTERNATIONAL SCIENTIFIC CONFERENCE OF YOUNG RESEARCHERS
143
Qafqaz University
18-19 April 2014, Baku, Azerbaijan
1. R
1
= H; R
2
= CH
3
CH
2
O; R
3
= CH
3
CH
2
O; R
4
= CH
3
; R
5
= H
2. R
1
= H; R
2
= CH
3
; R
3
= CH=CHCH
2
O; R
4
= CH
3
; R
5
= H
3. R
1
= H; R
2
= CH
3
; R
3
= CH
3
COCOOCH
2
CH
2
O; R
4
= CH
3
; R
5
= H
4. R
1
= H; R
2
= CH
3
; R
3
= CH
3
; R
4
= CH
3
; R
5
= H
5. R
1
= H; R
2
= CH
3
CH
2
O; R
3
= CH
3
CH
2
O; R
4
= OCH
3
; R
5
= H
6. R
1
= H; R
2
= CH
3
; R
3
= CH=CHCH
2
O; R
4
= OCH
3
; R
5
= H
7. R
1
= H; R
2
= CH
3
; R
3
= CH
3
COCOOCH
2
CH
2
O; R
4
= OCH
3
; R
5
= H
8. R
1
= H; R
2
= CH
3
; R
3
= CH
3
; R
4
= OCH
3
; R
5
= H
9. R
1
= H; R
2
= CH
3
CH
2
O; R
3
= CH
3
CH
2
O; R
4
= H; R
5
= H
10. R
1
= H; R
2
= CH
3
; R
3
= CH=CHCH
2
O; R
4
= H; R
5
= H
11. R
1
= H; R
2
= CH
3
; R
3
= CH
3
COCOOCH
2
CH
2
O; R
4
= H; R
5
= H
12. R
1
= H; R
2
= CH
3
; R
3
= CH
3
; R
4
= H; R
5
= H
13. R
1
= H; R
2
= CH
3
CH
2
O; R
3
= CH
3
CH
2
O; R
4
= H; R
5
= OH
14. R
1
= H; R
2
= CH
3
; R
3
= CH=CHCH
2
O; R
4
= H; R
5
= OH
15. R
1
= H; R
2
= CH
3
; R
3
= CH
3
COCOOCH
2
CH
2
O; R
4
= H; R
5
= OH
16. R
1
= H; R
2
= CH
3
; R
3
= CH
3
; R
4
= H; R
5
= OH
Birmərhələli üçkomponentli kondensləşmə reaksiyası 0.1:0.15:0.1 nisbətində aparılmışdır. Qarışığı 10 ml izopropil
spirtində həll edərək üzərinə 0.2-0.3 ml üçflüorsirkə turşusu əlavə edilir. Reaksiya 4-5 saat müddətinə 80-85°C tem-
peraturda sürətli qarışdırılır. Reaksiyanın gedişinə nazik təbəqəli xromotoqrafiya ilə nəzarət edilir. Reaksiyanın başa çatdığı
müəyyən olduqdan sonra qarışıq 0°C temperatura qədər soyudularaq bir gün saxlanılır. Çökmüş yeni tsiklik birləşmələr (1-
16) ağ kristalları süzülərək ayrılır və dixlormetanda yuyulduqdan sonra etil spirtində kristallaşdırılır. Elyuent kimi
heksan:etil spirtinin 5:2 nisbəti götürülür.
SYNTHESIS AND STRUCTURAL PROPERTIES OF NICKEL SULFIDE NANOPARTICLES
IN FNBR POLYMER MATRIX
Ofeliya BALAYEVA, Narmina BALAYEVA, Abdulsaid AZIZOV, Mustafa MURADOV,
Rasim ALOSMANOV
Baku State University
ofeliya1989@inbox.ru
Nanoscale materials are being pursued extensively because of their crystal structures, optical, magnetic, electrical and
catalytic properties, which are strongly composition-, structure-, size- and shape-dependent. It is known that metal sulfides
exhibited interesting electronic properties and achieved several technological applications. Transition metal (TM) sulfides
exhibit interesting optical, electronic, thermoelectric and photoelectric properties. Nickel sulfide (NiS) an important member
of TM sulfides, finds use as a potential cathode material for the rechargeable lithium battery, as a catalyst in the degradation
of organic dyes and in magnetic devices [2,3]. Owing to the tremendous technological importance, different synthesis routes
have been tried for the synthesis of nanoparticles of NiS. Some of the techniques, which have being used for the preparation
of nanoparticles include solvothermal process, UV irradiation, sol-gel method, laser ablation within copolymer and colloidal
microemulsion etc. Among the family of metal sulfides, nickel sulfides have attracted much attention owing to their
potential applications as a transformation agent for materials used in semiconductor applications, catalysts, and cathode
materials for rechargeable lithium batteries.
In this work, we report synthesis of NiS nanoparticles by chemical route. The FNBR polymer sorbents was synthesized
from oxidative chlorophosphorylation reaction of synthetic nitrile rubber by participation of phosphorus thrichloride
(PCl3)[4]. The reaction was carried out at 60 C temperature for 30 min with stirring. It was determined that the reaction was
exothermic. To carry out oxidative chlorophosphorylation was used an apparatus consisting of a round four-necked flask
equipped with a mechanical stirrer, thermometer, reflux condenserand a bubbler for oxygen.There is induce -PO(OH)
2
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