Endohedral Regulator for Metallofullerene Chemical Property: Diels–Alder Reaction Studies of ScxY3‐xN@C80‐Ih (x=0‐3)
暂无分享,去创建一个
Lan Wang | Wei Jia | Zhen Guo | Wenhua Xue | Zhuxia Zhang | Jieying Zhang | Y. Zhang | Peng Cui | Cai-li Zhang
[1] Gernot Frenking,et al. Energy decomposition analysis , 2020, Catalysis from A to Z.
[2] Zhen Guo,et al. Diels–Alder Reactivity of Metallofullerene Sc3N@C78 and Structure Elucidation on Its Products , 2017 .
[3] Tao Wei,et al. When metal clusters meet carbon cages: endohedral clusterfullerenes. , 2017, Chemical Society reviews.
[4] K. Houk,et al. Analyzing Reaction Rates with the Distortion/Interaction‐Activation Strain Model , 2017, Angewandte Chemie.
[5] Bernd Büchner,et al. Single molecule magnet with an unpaired electron trapped between two lanthanide ions inside a fullerene , 2017, Nature Communications.
[6] Sílvia Osuna,et al. The Regioselectivity of Bingel-Hirsch Cycloadditions on Isolated Pentagon Rule Endohedral Metallofullerenes. , 2016, Angewandte Chemie.
[7] L. P. Wolters,et al. The activation strain model and molecular orbital theory , 2015, Wiley interdisciplinary reviews. Computational molecular science.
[8] Sílvia Osuna,et al. A complete guide on the influence of metal clusters in the Diels-Alder regioselectivity of I(h)-C80 endohedral metallofullerenes. , 2013, Chemistry.
[9] K. Houk,et al. Diels-Alder reactivities of strained and unstrained cycloalkenes with normal and inverse-electron-demand dienes: activation barriers and distortion/interaction analysis. , 2013, Journal of the American Chemical Society.
[10] Xing Lu,et al. An Improbable Monometallic Cluster Entrapped in a Popular Fullerene Cage: YCN@Cs(6)-C82 , 2013, Scientific Reports.
[11] Xing Lu,et al. Current status and future developments of endohedral metallofullerenes. , 2012, Chemical Society reviews.
[12] Sílvia Osuna,et al. Full exploration of the Diels-Alder cycloaddition on metallofullerenes M3N@C80 (M = Sc, Lu, Gd): the D(5h) versus I(h) isomer and the influence of the metal cluster. , 2012, Chemistry.
[13] Sílvia Osuna,et al. The Frozen Cage Model: A Computationally Low-Cost Tool for Predicting the Exohedral Regioselectivity of Cycloaddition Reactions Involving Endohedral Metallofullerenes. , 2012, Journal of chemical theory and computation.
[14] Panos P. Fatouros,et al. High relaxivity trimetallic nitride (Gd3N) metallofullerene MRI contrast agents with optimized functionality. , 2010, Bioconjugate chemistry.
[15] Kai Tan,et al. Russian-doll-type metal carbide endofullerene: synthesis, isolation, and characterization of Sc4C2@C80. , 2009, Journal of the American Chemical Society.
[16] Luis Echegoyen,et al. Chemical, electrochemical, and structural properties of endohedral metallofullerenes. , 2009, Angewandte Chemie.
[17] Marcel Swart,et al. Chemical reactivity of D3h C78 (metallo)fullerene: regioselectivity changes induced by Sc3N encapsulation. , 2008, Journal of the American Chemical Society.
[18] Chunru Wang,et al. Comparative Spectroscopic and Reactivity Studies of Sc3-xYxN@C80 (x = 0−3) , 2007 .
[19] Shangfeng Yang,et al. Endohedral clusterfullerenes--playing with cluster and cage sizes. , 2007, Physical chemistry chemical physics : PCCP.
[20] E. Zhang,et al. Size effect of encaged clusters on the exohedral chemistry of endohedral fullerenes: a case study on the pyrrolidino reaction of ScxGd3-xN@C80 (x = 0-3). , 2007, Organic letters.