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Дибензотиофен

Дибензотиофен структура
132-65-0
CAS №
132-65-0
Химическое название:
Дибензотиофен
английское имя:
Dibenzothiophene
Синонимы:
Dibenzo[b,d]thiophene;Dibenzothiophe;DIBENZTHIOPHENE;AKOS 298;'LGC' (4001);9-Thiafluorene;ibenzothiophene;DIBENZOTHIOPHENE;Dibenzobthiophene;alpha-Thiafluorene
CBNumber:
CB7426957
Формула:
C12H8S
молекулярный вес:
184.26
MOL File:
132-65-0.mol

Дибензотиофен атрибут

Температура плавления: 97-100 °C (lit.)
Температура кипения: 332-333 °C (lit.)
плотность: 1.1410 (rough estimate)
показатель преломления: 1.6500 (estimate)
Fp: 170 °C
температура хранения: Store below +30°C.
растворимость: 0,0015 г/л (лит.)
форма: Кристаллический порошок и/или кусочки
цвет: белый
РН: 7 (50g/l, H2O, 20℃)(slurry)
Растворимость в воде: растворимый
БРН: 121101
LogP: 4.380
Справочник по базе данных CAS: 132-65-0(CAS DataBase Reference)
FDA 21 CFR: 310.545
Рейтинг продуктов питания EWG: 2
FDA UNII: Z3D4AJ1R48
Справочник по химии NIST: Dibenzothiophene(132-65-0)
МАИР: 3 (Vol. 103) 2013
Система регистрации веществ EPA: Dibenzothiophene (132-65-0)
безопасность
  • Заявления о рисках и безопасности
  • код информации об опасности(GHS)
Коды опасности Xn,N
Заявления о рисках 22-20/21/22-50/53
Заявления о безопасности 36-61-60
РИДАДР 2811
WGK Германия 3
RTECS HQ3490550
Температура самовоспламенения >450 °C
TSCA Yes
Класс опасности 9
Группа упаковки III
кода HS 29349990
Банк данных об опасных веществах 132-65-0(Hazardous Substances Data)
Токсичность mouse,LD,intraperitoneal,> 500mg/kg (500mg/kg),"Summary Tables of Biological Tests," National Research Council Chemical-Biological Coordination Center. Vol. 4, Pg. 378, 1952.
символ(GHS) GHS hazard pictogramsGHS hazard pictograms
сигнальное слово Warning
Заявление об опасности
пароль Заявление об опасности Класс опасности категория сигнальное слово пиктограмма предупреждение
H302 Вредно при проглатывании. Острая токсичность, пероральная Категория 4 Предупреждение GHS hazard pictograms P264, P270, P301+P312, P330, P501
H410 Чрезвычайно токсично для водных организмов с долгосрочными последствиями. Опасность для водной среды, долгосрочная опасность Категория 1 Предупреждение GHS hazard pictograms P273, P391, P501
Внимание
P273 Избегать попадания в окружающую среду.
P301+P312+P330 ПРИ ПРОГЛАТЫВАНИИ: Обратиться за медицинской помощью при плохом самочувствии. Прополоскать рот.

Дибензотиофен MSDS


Dibenzothiophene

Дибензотиофен химические свойства, назначение, производство

Описание

Dibenzothiophene (DBT) is an organosulfur compound found in crude oil and petroleum. It is a colourless solid that is chemically somewhat similar to anthracene. Dibenzothiophene is used as a chemical intermediate in cosmetics and pharmaceuticals (NLM, 2006).It is used to investigate the effect of sulfur compounds in gasoline range during the fluid catalytic cracking (FCC) process.

Химические свойства

Dibenzothiophene is a yellow-green, crystalline solid with an mp of 99.5°C and a bp of 332.5°C. It is soluble in ethanol, benzene, chloroform, and methanol but insoluble in water. Its dipole moment is 0.83 D. It is quite stable under normal temperature and pressure.

История

Dibenzothiophene was first synthesized in 1870 by Stemhouse by heating biphenyl with iron scrap, but the assigned incorrect structure was corrected by Graebe. The natural dibenzothiophene was isolated from coal tar by Kruber. Besides this, various alkylated dibenzothiophenes have also been isolated from the crude oil, but it was difficult to desulfurize them catalytically. The presence of sulfur in the fuel produces sulfur dioxide when burnt and causes air pollution.
Dibenzothiophene is a thermally stable compound and resistant to mild oxidizing agents. Depending on the nature of the oxidizing agent it is oxidized to corresponding sulfoxide and sulfone. There are numerous protocols for the construction of dibenzothiophene but some of them are limited to the synthesis of specific compounds due to noncompatibility of functional groups.

Использование

Dibenzothiophene is used to investigate the effect of sulfur compounds in the gasoline range during the fluid catalytic cracking (FCC) process. It can also be used as:
A starting material for the synthesis of corresponding sulfoxide and sulfone by oxidative desulfurization using various catalysts.
A template for the synthesis of surface molecular imprinted polymer (SMIP). SMIP is applicable for the removal of dibenzothiophene during desulfurization of the gasoline.
A precursor for the synthesis of DBT based π-conjugating polymers.

Определение

ChEBI: Dibenzothiophene is a mancude organic heterotricyclic parent that consists of a thiophene ring flanked by two benzene rings ortho-fused across the 2,3- and 4,5-positions. It has a role as a keratolytic drug. It is a member of dibenzothiophenes and a mancude organic heterotricyclic parent.

прикладной

Dibenzothiophene is an important representative of polycyclic aromatic hydrocarbons (PAHs). Kinetics of hydrodesulfurization of dibenzothiophene on presulflded molybdenaalumina catalyst has been studied in a high-pressure-flow microreactor. Biodesulfurization of dibenzothiophene by selective cleavage of carbon sulphur bonds by a thermophilic bacterium Bacillus subtilis WU-S2B has been reported.
Dibenzothiophene was employed as heavy model sulfur compound to investigate the effect of heavy sulfur compounds on the percentage of sulfur in gasoline range during the Fluid Catalytic Cracking (FCC) process.

Подготовка

Dibenzothiophene is prepared by the reaction of biphenyl with sulfur dichloride in the presence of aluminium chloride.
synthesis of dibenzothiophene
The parent dibenzothiophene has been synthesized by heating a mixture of biphenyl with sulfur at 120°C for 24 h in the presence of anhydrous AlCl3 in 79% yields. This methodology is useful for the synthesis of substituted dibenzothiophenes.
An alternative new protocol has been developed for the synthesis of dibenzothiophene and bridged dibenzothiophene by heating diphenyl and phenanthrene separately with H2S in the presence of mixed metal oxides (Al2O3, Cr2O3, and MgO) at 650°C.

Реакции

Reduction with lithium results in scission of one C-S bond. S-oxidation occurs to give the sulfone, which is more labile than the parent dibenzothiophene. With butyllithium, this heterocycle undergoes stepwise lithiation at the 4- and 6- positions.
Alkylation of dibenzothiophene
Alkylation of dibenzothiophene through Friedel-Crafts catalysis is not very facile and ends up with a complex mixture. However, alkylation of dibenzothiophene has been achieved through lithiation strategy. Thus 4-lithiated dibenzothiophene on reaction with dimethyl sulfate gave 4-methyl dibenzothiophene.

Общее описание

Dibenzothiophene is an important representative of polycyclic aromatic hydrocarbons (PAHs). Kinetics of hydrodesulfurization of dibenzothiophene on presulflded molybdenaalumina catalyst has been studied in a high-pressure-flow microreactor. Biodesulfurization of dibenzothiophene by selective cleavage of carbon sulphur bonds by a thermophilic bacterium Bacillus subtilis WU-S2B has been reported.

Химическая реактивность

Dibenzothiophene is heteroaromatic in nature and undergoes electrophilic substitution reactions smoothly. Mostly, electrophilic substitution occurs at position 2 of dibenzothiophene offering 2-substituted dibenzothiophene, provided position 2 is not preoccupied.

Методы очистки

Purify dibenzothiophene by chromatography on alumina with pet ether, in a darkened room. Recrystallise it from water or EtOH. [Beilstein 17 V 239.]

использованная литература

[1] KARINA TACIANA SILVA. DBT- and DBTO2-Induced Dysplasia and Their Associated Proteomic Alterations in the Small Intestines of Wistar Rats[J]. Journal of Proteome Research, 2014, 14 1: 385-396. DOI:10.1021/pr5009459.
[2] MASATOSHI NAGAI Toshiaki K. Selectivity of molybdenum catalyst in hydrodesulfurization, hydrodenitrogenation, and hydrodeoxygenation: Effect of additives on dibenzothiophene hydrodesulfurization[J]. Journal of Catalysis, 1983, 81 2: Pages 440-449. DOI:10.1016/0021-9517(83)90182-3.
[3] KOHTARO KIRIMURA. Biodesulfurization of dibenzothiophene and its derivatives through the selective cleavage of carbon-sulfur bonds by a moderately thermophilic bacterim Bacillus subtilis WU-S2B[J]. Journal of bioscience and bioengineering, 2001, 91 3: Pages 262-266. DOI:10.1016/S1389-1723(01)80131-6.
[4] KE LI Xiangtai M Aimin Yu. Synthesis of Dibenzothiophene and 1,4-Dihydrodibenzothiophene Derivatives via Allylic Phosphonium Salt Initiated Domino Reactions[J]. Organic Letters, 2018, 20 4: 1106-1109. DOI:10.1021/acs.orglett.8b00028.
[5] AVISIKTA SINHA Mangalampalli R. Synthesis and Properties of Dibenzothiophene Embedded Heteroporphyrins[J]. The Journal of Organic Chemistry, 2021, 86 9: 6100-6110. DOI:10.1021/acs.joc.0c02937.

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