The Experts below are selected from a list of 69 Experts worldwide ranked by ideXlab platform
Zheming Wang - One of the best experts on this subject based on the ideXlab platform.
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efficient cage opening cascade process for the preparation of water encapsulated 60 fullerene derivatives
Organic Letters, 2009Co-Authors: Qianyan Zhang, Zhenshan Jia, Shuming Liu, Gang Zhang, Zuo Xiao, Dazhi Yang, Liangbing Gan, Zheming WangAbstract:Cage-opened fullerenes with 18-membered-ring orifices have been prepared starting from fullerene-mixed peroxides. The key transformation involves a cascade sequence including a Deketalization, a SN2′ epoxide opening reaction, and a formal 3,3-σ rearrangement. The 18-membered-ring orifice is big enough for water encapsulation under mild conditions. Single crystal X-ray structures were obtained for both the empty and water-encapsulated fullerene derivatives.
Li Yuliang - One of the best experts on this subject based on the ideXlab platform.
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Efficient Cage-Opening Cascade Process for the Preparation of Water-Encapsulated [60]Fullerene Derivatives
organic letters, 2009Co-Authors: Zhang Qianyan, Jia Zhenshan, Liu Shuming, Zhang Gang, Xiao Zuo, Yang Dazhi, Gan Liangbing, Wang Zheming, Li YuliangAbstract:Cage-opened fullerenes with 18-membered-ring orifices have been prepared starting from fullerene-mixed peroxides. The key transformation involves a cascade sequence including a Deketalization, a S(N)2' epoxide opening reaction, and a formal 3,3-sigma rearrangement. The 18-membered-ring orifice is big enough for water encapsulation under mild conditions. Single crystal X-ray structures were obtained for both the empty and water-encapsulated fullerene derivatives.Chemistry, OrganicSCI(E)24ARTICLE132772-27741
Qianyan Zhang - One of the best experts on this subject based on the ideXlab platform.
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efficient cage opening cascade process for the preparation of water encapsulated 60 fullerene derivatives
Organic Letters, 2009Co-Authors: Qianyan Zhang, Zhenshan Jia, Shuming Liu, Gang Zhang, Zuo Xiao, Dazhi Yang, Liangbing Gan, Zheming WangAbstract:Cage-opened fullerenes with 18-membered-ring orifices have been prepared starting from fullerene-mixed peroxides. The key transformation involves a cascade sequence including a Deketalization, a SN2′ epoxide opening reaction, and a formal 3,3-σ rearrangement. The 18-membered-ring orifice is big enough for water encapsulation under mild conditions. Single crystal X-ray structures were obtained for both the empty and water-encapsulated fullerene derivatives.
Zhang Qianyan - One of the best experts on this subject based on the ideXlab platform.
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Efficient Cage-Opening Cascade Process for the Preparation of Water-Encapsulated [60]Fullerene Derivatives
organic letters, 2009Co-Authors: Zhang Qianyan, Jia Zhenshan, Liu Shuming, Zhang Gang, Xiao Zuo, Yang Dazhi, Gan Liangbing, Wang Zheming, Li YuliangAbstract:Cage-opened fullerenes with 18-membered-ring orifices have been prepared starting from fullerene-mixed peroxides. The key transformation involves a cascade sequence including a Deketalization, a S(N)2' epoxide opening reaction, and a formal 3,3-sigma rearrangement. The 18-membered-ring orifice is big enough for water encapsulation under mild conditions. Single crystal X-ray structures were obtained for both the empty and water-encapsulated fullerene derivatives.Chemistry, OrganicSCI(E)24ARTICLE132772-27741
Dazhi Yang - One of the best experts on this subject based on the ideXlab platform.
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efficient cage opening cascade process for the preparation of water encapsulated 60 fullerene derivatives
Organic Letters, 2009Co-Authors: Qianyan Zhang, Zhenshan Jia, Shuming Liu, Gang Zhang, Zuo Xiao, Dazhi Yang, Liangbing Gan, Zheming WangAbstract:Cage-opened fullerenes with 18-membered-ring orifices have been prepared starting from fullerene-mixed peroxides. The key transformation involves a cascade sequence including a Deketalization, a SN2′ epoxide opening reaction, and a formal 3,3-σ rearrangement. The 18-membered-ring orifice is big enough for water encapsulation under mild conditions. Single crystal X-ray structures were obtained for both the empty and water-encapsulated fullerene derivatives.