about 96%, i.e. nitration of naphthalene with a
classical nitrating mixture in 1,4-dioxane passes with
good regioselectivity. In general, a high
regioselectivity of naphthalene nitration is typical in
the case of using the classic nitration mixture.
(Ikegami and Hiyama, 1954; Alcorn and Wells,
1965). Another advantage of the nitration is the
availability of reagents and simplicity of performing
the synthesis.
1-Nitronaphtalene: isolated yield 0.65 g (96%),
yellow crystalline solid, mp 52.5-53°C [lit. mp 52°C
(Talukder and Kates, 1995)]. IR, cm
-1
: 2831, 1631,
1600, 1568, 1514, 1458, 1439, 1354, 1344, 1261,
1216, 1200, 1173, 1163, 1148, 1141, 1079, 1030,
1000, 978, 961, 953, 930, 914, 872, 861, 815, 804,
787, 759, 726, 655, 628. EIMS: m/z for [M
+
] found:
173.04720. Calc. for C
10
H
7
NO
2
: 173.0471.
4 CONCLUSIONS
Nitration of naphthalene with a nitrating mixture in
1,4-dioxane occurs under homogeneous conditions.
The proposed method for the synthesis of 1-
nitronaphthalene is simple and effective. The yield
of the product reaches 96-97%. Nitration of
naphthalene in 1,4-dioxane has a high
regioselectivity. The content of 1-nitronaphthalene
and 2-nitronaphthalene in the product is 96 and 4%,
respectively.
ACKNOWLEDGEMENTS
The work was performed using the instrumentation
of Core Facility Center “Arktika” of Northern
(Arctic) Federal University (project
RFMEFI59417X0013).
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Synthesis of 1-Nitronaphthalene under Homogeneous Conditions
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