Simulation for Synthesis of Tritiated Styrene by Catalyzed Addition of Deuterium

Tritiated styrene plays an important role in the organic tritium lights, which could be made by selective hydrogenation of phenylacetylene. A simulated reaction of the preparation of tritiated styrene was studied by using deuterium instead of tritium and using the Lindlar catalyst instead of Pd/C ca...

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Main Author: CUI Xiao-jing;KANG Yi;HU Shi-lin
Format: Article
Language:zho
Published: Editorial Board of Journal of Isotopes 2016-08-01
Series:Journal of Isotopes
Subjects:
Online Access:http://www.tws.org.cn/CN/10.7538/tws.2016.29.03.0176
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spelling doaj-b73d330f76b040b995e949e5f9ececd32020-11-25T02:17:07ZzhoEditorial Board of Journal of IsotopesJournal of Isotopes1000-75121000-75122016-08-0129317618010.7538/tws.2016.29.03.0176 Simulation for Synthesis of Tritiated Styrene by Catalyzed Addition of DeuteriumCUI Xiao-jing;KANG Yi;HU Shi-linTritiated styrene plays an important role in the organic tritium lights, which could be made by selective hydrogenation of phenylacetylene. A simulated reaction of the preparation of tritiated styrene was studied by using deuterium instead of tritium and using the Lindlar catalyst instead of Pd/C catalyst to improve the conversion and selectivity of the reaction. Experiment results showed that stirring speed, temperature and the amount of deuterium were the most important factors to effect the conversion and selectivity of the reaction. The relative stronger stirring speed and higher temperature could improve the conversion rate of the reaction, but could not change the selectivity. When the excessive or less deuterium was added in the reaction, the selectivity was decreased significantly, since the over deuterium promoted the reaction toward ethylbenzene. Lindlar catalyst exhibited higher selectivity toward styrene than Pd/C. http://www.tws.org.cn/CN/10.7538/tws.2016.29.03.0176 lindlar catalyst tritiated styrene deuterium selective catalyzed addition reaction
collection DOAJ
language zho
format Article
sources DOAJ
author CUI Xiao-jing;KANG Yi;HU Shi-lin
spellingShingle CUI Xiao-jing;KANG Yi;HU Shi-lin
Simulation for Synthesis of Tritiated Styrene by Catalyzed Addition of Deuterium
Journal of Isotopes
lindlar catalyst tritiated styrene deuterium selective catalyzed addition reaction
author_facet CUI Xiao-jing;KANG Yi;HU Shi-lin
author_sort CUI Xiao-jing;KANG Yi;HU Shi-lin
title Simulation for Synthesis of Tritiated Styrene by Catalyzed Addition of Deuterium
title_short Simulation for Synthesis of Tritiated Styrene by Catalyzed Addition of Deuterium
title_full Simulation for Synthesis of Tritiated Styrene by Catalyzed Addition of Deuterium
title_fullStr Simulation for Synthesis of Tritiated Styrene by Catalyzed Addition of Deuterium
title_full_unstemmed Simulation for Synthesis of Tritiated Styrene by Catalyzed Addition of Deuterium
title_sort simulation for synthesis of tritiated styrene by catalyzed addition of deuterium
publisher Editorial Board of Journal of Isotopes
series Journal of Isotopes
issn 1000-7512
1000-7512
publishDate 2016-08-01
description Tritiated styrene plays an important role in the organic tritium lights, which could be made by selective hydrogenation of phenylacetylene. A simulated reaction of the preparation of tritiated styrene was studied by using deuterium instead of tritium and using the Lindlar catalyst instead of Pd/C catalyst to improve the conversion and selectivity of the reaction. Experiment results showed that stirring speed, temperature and the amount of deuterium were the most important factors to effect the conversion and selectivity of the reaction. The relative stronger stirring speed and higher temperature could improve the conversion rate of the reaction, but could not change the selectivity. When the excessive or less deuterium was added in the reaction, the selectivity was decreased significantly, since the over deuterium promoted the reaction toward ethylbenzene. Lindlar catalyst exhibited higher selectivity toward styrene than Pd/C.
topic lindlar catalyst tritiated styrene deuterium selective catalyzed addition reaction
url http://www.tws.org.cn/CN/10.7538/tws.2016.29.03.0176
work_keys_str_mv AT cuixiaojingkangyihushilin simulationforsynthesisoftritiatedstyrenebycatalyzedadditionofdeuterium
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