Hierarchically Structured Fullerene C70 Cube for Sensing Volatile Aromatic Solvent Vapors.
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Katsuhiko Ariga | Kosuke Minami | Waka Nakanishi | K. Ariga | Jonathan P. Hill | L. Shrestha | P. Bairi | Waka Nakanishi | K. Minami | Jonathan P. Hill | Partha Bairi | Lok Kumar Shrestha
[1] Yong Zhou,et al. Hexahedron Prism-Anchored Octahedronal CeO2: Crystal Facet-Based Homojunction Promoting Efficient Solar Fuel Synthesis. , 2015, Journal of the American Chemical Society.
[2] M. Pumera,et al. Electrochemistry of graphene and related materials. , 2014, Chemical reviews.
[3] J. Tu,et al. Self-assembled synthesis of hierarchically porous NiO film and its application for electrochemical capacitors , 2012 .
[4] Vakayil K. Praveen,et al. Photoresponsive metal–organic materials: exploiting the azobenzene switch , 2014 .
[5] Xiaozhang Zhu,et al. Electron transfer through rigid organic molecular wires enhanced by electronic and electron-vibration coupling. , 2014, Nature chemistry.
[6] A. V. Talyzin,et al. C70 in Benzene, Hexane, and Toluene Solutions , 1998 .
[7] M. Jaroniec,et al. Gas adsorption characterization of ordered organic-inorganic nanocomposite materials , 2001 .
[8] N. Koratkar,et al. Graphene--nanotube--iron hierarchical nanostructure as lithium ion battery anode. , 2013, ACS nano.
[9] Dan Zhao,et al. Stabilization of metal-organic frameworks with high surface areas by the incorporation of mesocavities with microwindows. , 2009, Journal of the American Chemical Society.
[10] Bo Liedberg,et al. Thickness‐Gradient Films for High Gauge Factor Stretchable Strain Sensors , 2015, Advanced materials.
[11] M. Kappes,et al. The Structure of the C60 Molecule: X-Ray Crystal Structure Determination of a Twin at 110 K , 1991, Science.
[12] C. M. Li,et al. Assembly of graphene sheets into hierarchical structures for high-performance energy storage. , 2011, ACS nano.
[13] Katsuhiko Ariga,et al. Fullerene crystals with bimodal pore architectures consisting of macropores and mesopores. , 2013, Journal of the American Chemical Society.
[14] C. K. Mathews,et al. Solubility of C70 in Organic Solvents , 1994 .
[15] Bingbing Liu,et al. Synthesis of differently shaped C70 nano/microcrystals by using various aromatic solvents and their crystallinity-dependent photoluminescence , 2012 .
[16] W. David,et al. Crystal Structure and Bonding of Ordered C60. , 2010 .
[17] Stephen Mann,et al. Higher-order organization by mesoscale self-assembly and transformation of hybrid nanostructures. , 2003, Angewandte Chemie.
[18] Marappan Sathish,et al. Nanoporous Fullerene Nanowhiskers , 2007 .
[19] Lei Jiang,et al. Hierarchical Nanowire Arrays as Three-Dimensional Fractal Nanobiointerfaces for High Efficient Capture of Cancer Cells. , 2016, Nano letters.
[20] François Diederich,et al. Supramolecular fullerene chemistry , 1999 .
[21] Rekha Goswami Shrestha,et al. Nanoporous carbon tubes from fullerene crystals as the π-electron carbon source. , 2015, Angewandte Chemie.
[22] A. Sood,et al. Pressure induced dimerisation of C70 , 1997 .
[23] Katsuhiko Ariga,et al. Fullerene Nanoarchitectonics: From Zero to Higher Dimensions , 2013 .
[24] Jiaqi Huang,et al. Hierarchical Nanocomposites Derived from Nanocarbons and Layered Double Hydroxides ‐ Properties, Synthesis, and Applications , 2012 .
[25] H. Choi,et al. Selective Growth of a C70 Crystal in a Mixed Solvent System: From Cube to Tube , 2015 .
[26] Eiichi Nakamura,et al. Functionalized Fullerenes in Water. The First 10 Years of Their Chemistry, Biology, and Nanoscience , 2004 .
[27] D. Guldi,et al. Fullerene for organic electronics. , 2009, Chemical Society reviews.
[28] M. Sathish,et al. Size-tunable hexagonal fullerene (C60) nanosheets at the liquid-liquid interface. , 2007, Journal of the American Chemical Society.
[29] Kun'ichi Miyazawa,et al. C_60 Nanowhiskers Formed by the Liquid–liquid Interfacial Precipitation Method , 2002 .
[30] H. Choi,et al. Self-crystallization of C(70) cubes and remarkable enhancement of photoluminescence. , 2010, Angewandte Chemie.
[31] Katsuhiko Ariga,et al. Layer-by-layer films of graphene and ionic liquids for highly selective gas sensing. , 2010, Angewandte Chemie.
[32] Yijing Yan,et al. Blue-green photoluminescence from pyridine-C60 adduct , 2000 .
[33] Junhong Chen,et al. A hierarchical tin/carbon composite as an anode for lithium-ion batteries with a long cycle life. , 2015, Angewandte Chemie.
[34] M. Aono,et al. Forming nanomaterials as layered functional structures toward materials nanoarchitectonics , 2012 .
[35] C. Faul. Ionic self-assembly for functional hierarchical nanostructured materials. , 2014, Accounts of chemical research.
[36] G. Thomson,et al. The Antoine equation for vapor-pressure data. , 1946, Chemical reviews.
[37] Ayyappanpillai Ajayaghosh,et al. Living supramolecular polymerization , 2015, Science.
[38] G. Whitesides,et al. Self-Assembly at All Scales , 2002, Science.
[39] Yan Zhao,et al. Fluorescence of C60 and Its Interaction with Pyridine , 2004 .
[40] Katsuhiko Ariga,et al. Challenges and breakthroughs in recent research on self-assembly , 2008, Science and technology of advanced materials.
[41] B. G. Potter,et al. Graphene mediated self-assembly of fullerene nanorods. , 2015, Chemical communications.
[42] Martin Pumera,et al. Electrochemistry of graphene, graphene oxide and other graphenoids: Review , 2013 .
[43] S. Kitagawa,et al. Mesoscopic architectures of porous coordination polymers fabricated by pseudomorphic replication. , 2012, Nature materials.
[44] Heinrich M. Jaeger,et al. Hierarchical self-assembly of metal nanostructures on diblock copolymer scaffolds , 2001, Nature.
[45] Katsuhiko Ariga,et al. Alcohol-induced decomposition of Olmstead's crystalline Ag(I)-fullerene heteronanostructure yields 'bucky cubes'† , 2013 .
[46] Katsuhiko Ariga,et al. Highly Ordered 1D Fullerene Crystals for Concurrent Control of Macroscopic Cellular Orientation and Differentiation toward Large‐Scale Tissue Engineering , 2015, Advanced materials.
[47] Mitchell A. Winnik,et al. Multidimensional hierarchical self-assembly of amphiphilic cylindrical block comicelles , 2015, Science.
[48] Katsuhiko Ariga,et al. Bioactive nanocarbon assemblies: Nanoarchitectonics and applications , 2014 .
[49] L. Ceseracciu,et al. Hierarchical self-assembly of suspended branched colloidal nanocrystals into superlattice structures. , 2011, Nature materials.
[50] Guglielmo Lanzani,et al. Self-assembled hierarchical nanostructures for high-efficiency porous photonic crystals. , 2014, ACS nano.