Benzene Triimides: Facile Synthesis and Self‐Assembly Study
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De‐Xian Wang | Y. Ao | Qi‐Qiang Wang | Qing He | De‐Hui Tuo
[1] D. Das,et al. Unorthodox Combination of Cation-π and Charge-Transfer Interactions within a Donor-Acceptor Pair. , 2019, Langmuir : the ACS journal of surfaces and colloids.
[2] S. Saha. Anion-Induced Electron Transfer. , 2018, Accounts of chemical research.
[3] S. Matile,et al. The Emergence of Anion-π Catalysis. , 2018, Accounts of chemical research.
[4] F. Würthner,et al. Hydrogen-bonded perylene bisimide J-aggregate aqua material , 2018, Chemical science.
[5] Qichun Zhang,et al. Recent progress on organic donor–acceptor complexes as active elements in organic field-effect transistors , 2018 .
[6] Thimmaiah Govindaraju,et al. Architectonics: Design of Molecular Architecture for Functional Applications. , 2018, Accounts of chemical research.
[7] K. G. Thomas,et al. Enantioselective Light Harvesting with Perylenediimide Guests on Self-Assembled Chiral Naphthalenediimide Nanofibers. , 2017, Angewandte Chemie.
[8] T. Minami,et al. One-step, green synthesis of a supramolecular organogelator based on mellitic triimide for the recognition of aromatic compounds. , 2017, Chemical communications.
[9] E. W. Meijer,et al. Unraveling the Driving Forces in the Self-Assembly of Monodisperse Naphthalenediimide-Oligodimethylsiloxane Block Molecules , 2017, ACS nano.
[10] Dong Liu,et al. Stacking Interactions Induced Selective Conformation of Discrete Aromatic Arrays and Borromean Rings. , 2017, Journal of the American Chemical Society.
[11] S. Bhosale,et al. Functional Naphthalene Diimides: Synthesis, Properties, and Applications. , 2016, Chemical reviews.
[12] Á. Sastre‐Santos,et al. Perylenediimides as non-fullerene acceptors in bulk-heterojunction solar cells (BHJSCs) , 2016 .
[13] K. Rissanen,et al. Experimental investigation of anion-π interactions--applications and biochemical relevance. , 2016, Chemical communications.
[14] K. Rissanen,et al. Anion-π Interactions with Fluoroarenes. , 2015, Chemical reviews.
[15] Severin T. Schneebeli,et al. Gated electron sharing within dynamic naphthalene diimide-based oligorotaxanes. , 2014, Angewandte Chemie.
[16] Suhrit Ghosh,et al. Stimuli-responsive self-assembly of a naphthalene diimide by orthogonal hydrogen bonding and its coassembly with a pyrene derivative by a pseudo-intramolecular charge-transfer interaction. , 2014, Angewandte Chemie.
[17] P. Ballester. Experimental quantification of anion-π interactions in solution using neutral host-guest model systems. , 2013, Accounts of chemical research.
[18] K. Sada,et al. Polymer phase-transition behavior driven by a charge-transfer interaction. , 2013, Angewandte Chemie.
[19] S. Matile,et al. Synthetic ion transporters that work with anion-π interactions, halogen bonds, and anion-macrodipole interactions. , 2013, Accounts of chemical research.
[20] K. Dunbar,et al. Anion-π interactions in supramolecular architectures. , 2013, Accounts of chemical research.
[21] J. J. Reczek,et al. Predictable Tuning of Absorption Properties in Modular Aromatic Donor–Acceptor Liquid Crystals , 2012 .
[22] A. Frontera,et al. Putting anion-π interactions into perspective. , 2011, Angewandte Chemie.
[23] P. Jeschke,et al. Bildung von 3-substituierten Maleinimid-2-yl-maleinimiden und eines Benzen-tris-[N-(p-tolyl)dicarbonsäureimids] , 2010 .
[24] A. Prosyanik,et al. 3-aminopyrrole-2,5-diones 3*. Synthesis of benzenehexa-carboxylic acid trimethylimide and 1,1′-dimethyl-4-methylamino-[3,3′]bipyrrolyl-2,5,2′,5′-tetraone by the reaction of 1-methyl-3-methylaminopyrrole-2,5-dione with hydrogen chloride , 2009 .
[25] Orion B. Berryman,et al. Experimental evidence for interactions between anions and electron-deficient aromatic rings. , 2009, Chemical communications.
[26] K. More,et al. Self-assembly of perylenediimide and naphthalenediimide nanostructures on glass substrates through deposition from the gas phase. , 2008, Journal of the American Chemical Society.
[27] B. Hay,et al. Anion-arene adducts: C-H hydrogen bonding, anion-pi interaction, and carbon bonding motifs. , 2008, Chemical communications.
[28] Deana Jaber,et al. An expedient synthesis of mellitic triimides. , 2008, The Journal of organic chemistry.
[29] S. Teat,et al. Anion binding involving pi-acidic heteroaromatic rings. , 2007, Accounts of chemical research.
[30] Edward A. Mcgehee,et al. Complementary C3-symmetric donor-acceptor components: cocrystal structure and control of mesophase stability. , 2003, Journal of the American Chemical Society.
[31] V. Rotello,et al. Redox modulation of benzene triimides and diimides via noncovalent interactions. , 2003, Organic letters.
[32] D. G. Hamilton,et al. Mellitic triimides: C(3)-symmetric, three-electron acceptors for supramolecular chemistry. , 2001, Journal of the American Chemical Society.
[33] T. H. Dunning. Gaussian basis sets for use in correlated molecular calculations. I. The atoms boron through neon and hydrogen , 1989 .
[34] J M Blaney,et al. Electrostatic potential molecular surfaces. , 1982, Proceedings of the National Academy of Sciences of the United States of America.
[35] M. Plesset,et al. Note on an Approximation Treatment for Many-Electron Systems , 1934 .
[36] Otto Mumm,et al. Einige Derivate des Triketo-pyrrolidins und ihre Verwandlung in Trimethylparamid , 1912 .
[37] De‐Xian Wang,et al. Anion recognition by charge neutral electron-deficient arene receptors. , 2011, Chimia.
[38] R. Woodward,et al. The reaction of isoxazolium salts with nucleophiles , 1966 .