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Original Articles

Solubility of Fullerenes C60 and C70 in Seven Normal Alcohols and Their Deduced Solubility in Water

Pages 509-515 | Received 15 Nov 1995, Published online: 19 Aug 2006

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

VictorB. Luzhkov. (2012) Free-energy molecular simulations of the inclusion complex of Ne with fullerene C60 in water. Molecular Simulation 38:4, pages 326-332.
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D. Heymann, L. W. Jenneskens, J. Jehlička, C. Koper & E. Vlietstra. (2003) Terrestrial and Extraterrestrial Fullerenes. Fullerenes, Nanotubes and Carbon Nanostructures 11:4, pages 333-370.
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Yoko Kai, Yuka Komazawa, Atsuko Miyajima, Naoki Miyata & Yoko Yamakoshi. (2003) [60]Fullerene as a Novel Photoinduced Antibiotic. Fullerenes, Nanotubes and Carbon Nanostructures 11:1, pages 79-87.
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G. Le Strat, N. Noiret, A. Roucoux & H. Patin. (1999) The Solubility of Some Azafullerene Derivatives. Fullerene Science and Technology 7:5, pages 757-768.
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P.H. Fang & Robert Wong. (1997) Evidence for fullerene in a coal of Yunnan, Southwestern China. Materials Research Innovations 1:2, pages 130-132.
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MihályT. Beck & Géza Mándi. (1997) Solubility of C . Fullerene Science and Technology 5:2, pages 291-310.
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Articles from other publishers (120)

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Guang-Zhong Yin & De-Yi Wang. (2022) Reversible 1:1 Inclusion Complexes of C 60 Derivatives in α- and β-Cyclodextrins: Implications for Molecular Recognition-Based Sensing and Supramolecular Assembly . ACS Applied Nano Materials 5:1, pages 149-159.
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Liang Wang, Ziwen Yuan, H. Enis Karahan, Yilei Wang, Xiao Sui, Fei Liu & Yuan Chen. (2019) Nanocarbon materials in water disinfection: state-of-the-art and future directions. Nanoscale 11:20, pages 9819-9839.
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Saba Goodarzi, Tatiana Da Ros, João Conde, Farshid Sefat & Masoud Mozafari. (2017) Fullerene: biomedical engineers get to revisit an old friend. Materials Today 20:8, pages 460-480.
Crossref
Masuki Kawamoto, Pan He & Yoshihiro Ito. (2016) Green Processing of Carbon Nanomaterials. Advanced Materials 29:25.
Crossref
Victor B. Luzhkov, Vadim M. Volokhov & Gennadii A. Pokatovich. (2017) Molecular modelling and quantum mechanical calculations of the hydration free energy of buckminsterfullerene. Chemical Physics Letters 676, pages 95-98.
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Merry Sianipar, Seung Hyun Kim, Khoiruddin Khoiruddin, Ferry Iskandar & I Gede Wenten. (2017) Functionalized carbon nanotube (CNT) membrane: progress and challenges. RSC Advances 7:81, pages 51175-51198.
Crossref
Jiewei Wu, Wenlu Li & John D. Fortner. (2017) Photoenhanced oxidation of C 60 aggregates (nC 60 ) by free chlorine in water . Environmental Science: Nano 4:1, pages 117-126.
Crossref
Marinella Farré, Josep Sanchís & Damià Barceló. 2017. Nanotechnologies for Environmental Remediation. Nanotechnologies for Environmental Remediation 137 182 .
Baoshan Xing, Chad D. Vecitis & Nicola SenesiRalf Kaegi. 2016. Engineered Nanoparticles and the Environment: Biophysicochemical Processes and Toxicity. Engineered Nanoparticles and the Environment: Biophysicochemical Processes and Toxicity 53 74 .
Joanna Szala-Bilnik, Margarida F. Costa Gomes & Agílio A. H. Pádua. (2016) Solvation of C 60 Fullerene and C 60 F 48 Fluorinated Fullerene in Molecular and Ionic Liquids . The Journal of Physical Chemistry C 120:34, pages 19396-19408.
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Daisuke Iohara, Yoshitaka Umezaki, Makoto Anraku, Kaneto Uekama & Fumitoshi Hirayama. (2016) In Vitro and In Vivo Evaluation of Hydrophilic C 60 (OH) 10 /2-Hydroxypropyl-β-cyclodextrin Nanoparticles as an Antioxidant. Journal of Pharmaceutical Sciences 105:9, pages 2959-2965.
Crossref
R. Floris, K. Nijmeijer & E.R. Cornelissen. (2016) Removal of aqueous nC60 fullerene from water by low pressure membrane filtration. Water Research 91, pages 115-125.
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Jiewei Wu, Denise Benoit, Seung Soo Lee, Wenlu Li & John D. Fortner. (2015) Ground State Reactions of nC 60 with Free Chlorine in Water . Environmental Science & Technology 50:2, pages 721-731.
Crossref
Samile Seber & Grasiela Lopes Leães Pinho. 2016. Frontier Discoveries and Innovations in Interdisciplinary Microbiology. Frontier Discoveries and Innovations in Interdisciplinary Microbiology 185 192 .
Karima Gmiza, Anne Patricia Kouassi, Satinder Kaur Brar, Guy Mercier & Jean-François Blais. 2015. Nanomaterials in the Environment. Nanomaterials in the Environment 159 177 .
Konstantin N. Semenov, Teresa Regueira, Josefa Fernández, Nikolay A. Charykov & Igor V. Murin. (2015) Pressure dependence of the solubility of light fullerenes in 1-hexanol from 298.15K to 363.15K. Journal of Molecular Liquids 209, pages 71-76.
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S. R. Varanasi, O. A. Guskova, A. John & J.-U. Sommer. (2015) Water around fullerene shape amphiphiles: A molecular dynamics simulation study of hydrophobic hydration. The Journal of Chemical Physics 142:22.
Crossref
Pol Herrero, Patrick S. Bäuerlein, Erik Emke, Rosa M. Marcé & Pim de Voogt. (2015) Size and concentration determination of (functionalised) fullerenes in surface and sewage water matrices using field flow fractionation coupled to an online accurate mass spectrometer: Method development and validation. Analytica Chimica Acta 871, pages 77-84.
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Yoshitaka Umezaki, Daisuke Iohara, Makoto Anraku, Yoichi Ishitsuka, Tetsumi Irie, Kaneto Uekama & Fumitoshi Hirayama. (2015) Preparation of hydrophilic C60(OH)10/2-hydroxypropyl-β-cyclodextrin nanoparticles for the treatment of a liver injury induced by an overdose of acetaminophen. Biomaterials 45, pages 115-123.
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Kei OhkuboNaoki KohnoYusuke YamadaShunichi Fukuzumi. (2015) Singlet oxygen generation from Li + @C 60 nano-aggregates dispersed by laser irradiation in aqueous solution . Chemical Communications 51:38, pages 8082-8085.
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Joris J.-H. Haftka, Patrick S. Bäuerlein, Erik Emke, Nienke Lammertse, Daria Belokhovstova, Bart Hilvering, Pim de Voogt & Thomas L. ter Laak. (2015) Colloidal stability of (functionalised) fullerenes in the presence of dissolved organic carbon and electrolytes. Environmental Science: Nano 2:3, pages 280-287.
Crossref
E. Emke, J. Sanchís, M. Farré, P. S. Bäuerlein & P. de Voogt. (2015) Determination of several fullerenes in sewage water by LC HR-MS using atmospheric pressure photoionisation. Environmental Science: Nano 2:2, pages 167-176.
Crossref
Paul A. Indeglia, Angelina Georgieva, Vijay B. Krishna & Jean-Claude J. Bonzongo. (2014) Physicochemical characterization of fullerenol and fullerenol synthesis by-products prepared in alkaline media. Journal of Nanoparticle Research 16:9.
Crossref
Abdulmalik Altaf, Hibah Aldawsari, Zainy M. Banjar, Daisuke Iohara, Makoto Anraku, Kaneto Uekama & Fumitoshi Hirayama. (2014) Potential Use of /2-Hydroxypropyl- β -cyclodextrin Nanoparticles as a New Photosensitizer in the Treatment of Cancer . International Journal of Photoenergy 2014, pages 1-8.
Crossref
Paul A. Indeglia, Vijay B. Krishna, Angelina Georgieva & Jean-Claude J. Bonzongo. (2013) Mechanical transformation of fullerene (C60) to aqueous nano-C60 (aqu-nC60) in the presence and absence of light. Journal of Nanoparticle Research 15:11.
Crossref
Xiaojun Chang & Peter J. Vikesland. (2013) Effects of dilution on the properties of nC60. Environmental Pollution 181, pages 51-59.
Crossref
Xiaojun Chang & Peter J. Vikesland. (2013) Uncontrolled Variability in the Extinction Spectra of C 60 Nanoparticle Suspensions . Langmuir 29:31, pages 9685-9693.
Crossref
Nikolay O. Mchedlov-Petrossyan. (2013) Fullerenes in Liquid Media: An Unsettling Intrusion into the Solution Chemistry. Chemical Reviews 113:7, pages 5149-5193.
Crossref
Annemieke Kolkman, Erik Emke, Patrick S. Bäuerlein, Andrea Carboni, Diem Truc Tran, Thomas L. ter Laak, Annemarie P. van Wezel & Pim de Voogt. (2013) Analysis of (Functionalized) Fullerenes in Water Samples by Liquid Chromatography Coupled to High-Resolution Mass Spectrometry. Analytical Chemistry 85:12, pages 5867-5874.
Crossref
G Rossi, J Barnoud & L Monticelli. (2013) Partitioning and solubility of C 60 fullerene in lipid membranes . Physica Scripta 87:5, pages 058503.
Crossref
K. N. Semenov, N. A. Charykov, V. A. Keskinov, D. G. Letenko & V. A. Nikitin. (2013) Synthesis of fullerenol-70-d by direct oxidation and its identification. Russian Journal of General Chemistry 83:4, pages 674-678.
Crossref
Lilin Wang, John D. Fortner, Lei Hou, Chengdong Zhang, Amy T. Kan, Mason B. Tomson & Wei Chen. (2013) Contaminant-mobilizing capability of fullerene nanoparticles ( n C 60 ): Effect of solvent-exchange process in n C 60 formation . Environmental Toxicology and Chemistry 32:2, pages 329-336.
Crossref
Soumik Banerjee. (2013) Molecular dynamics study of self-agglomeration of charged fullerenes in solvents. The Journal of Chemical Physics 138:4.
Crossref
Ke Wu, Bharath Natarajan, Lisa Morkowchuk, Mike Krein & Curt M. Breneman. 2013. Informatics for Materials Science and Engineering. Informatics for Materials Science and Engineering 385 422 .
Xiaolei Qu, Pedro J.J. Alvarez & Qilin Li. (2012) Impact of Sunlight and Humic Acid on the Deposition Kinetics of Aqueous Fullerene Nanoparticles (nC 60 ) . Environmental Science & Technology 46:24, pages 13455-13462.
Crossref
D. G. Letenko, V. A. Nikitin, K. N. Semenov, N. A. Charykov & A. S. Ivanov. (2012) Conductivity of aqueous solutions of fullerol synthesized by direct oxidation. Russian Journal of Physical Chemistry A 86:12, pages 1808-1815.
Crossref
Benny F. G. Pycke, Tzu-Chiao Chao, Pierre Herckes, Paul Westerhoff & Rolf U. Halden. (2012) Beyond nC60: strategies for identification of transformation products of fullerene oxidation in aquatic and biological samples. Analytical and Bioanalytical Chemistry 404:9, pages 2583-2595.
Crossref
Hai Ming Wang & Gerhard Wenz. (2012) Molecular solubilization of fullerene C 60 in water by γ-cyclodextrin thioethers . Beilstein Journal of Organic Chemistry 8, pages 1644-1651.
Crossref
Xiaojun Chang, Laura K. Duncan, Joerg Jinschek & Peter J. Vikesland. (2012) Alteration of n C 60 in the Presence of Environmentally Relevant Carboxylates . Langmuir 28:20, pages 7622-7630.
Crossref
Tu Le, V. Chandana Epa, Frank R. Burden & David A. Winkler. (2012) Quantitative Structure–Property Relationship Modeling of Diverse Materials Properties. Chemical Reviews 112:5, pages 2889-2919.
Crossref
K. N. Semenov, N. A. Charykov, D. G. Letenko, V. A. Nikitin, V. I. Namazbaev, V. A. Keskinov & Yu. V. Pukharenko. (2012) Synthesis and protection effect of fullerenol-d. II. Modification of water-soluble priming enamel with fullerenol-d. Protection of Metals and Physical Chemistry of Surfaces 48:3, pages 334-339.
Crossref
Jung-Hwan Kwon. (2012) Destabilization of Aqueous Colloidal C 60 Nanoparticles in the Presence of Various Organic Matter . CLEAN - Soil, Air, Water 40:5, pages 472-478.
Crossref
Ji Dai, Chao Wang, Chii Shang, Nigel Graham & Guang-Hao Chen. (2012) Comparison of the cytotoxic responses of Escherichia coli (E. coli) AMC 198 to different fullerene suspensions (nC60). Chemosphere 87:4, pages 362-368.
Crossref
Randall D. Maples, Martha E. Hilburn, Befrika S. Murdianti, Rangika S. Hikkaduwa Koralege, Jason S. Williams, Satish I. Kuriyavar & Kevin D. Ausman. (2012) Optimized solvent-exchange synthesis method for C60 colloidal dispersions. Journal of Colloid and Interface Science 370:1, pages 27-31.
Crossref
Jernej Zupanc, Damjana Drobne, Barbara Drasler, Janez Valant, Ales Iglic, Veronika Kralj-Iglic, Darko Makovec, Michael Rappolt, Barbara Sartori & Ksenija Kogej. (2012) Experimental evidence for the interaction of C-60 fullerene with lipid vesicle membranes. Carbon 50:3, pages 1170-1178.
Crossref
Irina E. Gracheva, Vyatcheslav A. Moshnikov, Evgeniya V. Maraeva, Svetlana S. Karpova, Olga A. Alexsandrova, Nikolay I. Alekseyev, Vladimir V. Kuznetsov, Grażyna Olchowik, Konstantin N. Semenov, Arina V. Startseva, Anton V. Sitnikov & Jan M. Olchowik. (2012) Nanostructured materials obtained under conditions of hierarchical self-assembly and modified by derivative forms of fullerenes. Journal of Non-Crystalline Solids 358:2, pages 433-439.
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J.D. Fortner, C. Solenthaler, J.B. Hughes, A.M. Puzrin & M. Plötze. (2012) Interactions of clay minerals and a layered double hydroxide with water stable, nano scale fullerene aggregates (nC60). Applied Clay Science 55, pages 36-43.
Crossref
Chong Liu, Xing Xie & Yi Cui. 2012. Nano-Antimicrobials. Nano-Antimicrobials 465 494 .
Dong Li & Pedro J.J. Alvarez. (2011) Avoidance, weight loss, and cocoon production assessment for Eisenia fetida exposed to C60 in soil. Environmental Toxicology and Chemistry 30:11, pages 2542-2545.
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Maoyong Song, Shufang Liu, Junfa Yin & Hailin Wang. (2011) Interaction of Human Serum Album and C60 Aggregates in Solution. International Journal of Molecular Sciences 12:8, pages 4964-4974.
Crossref
Annemarie P. van Wezel, Véronique Morinière, Erik Emke, Thomas ter Laak & Ariadne C. Hogenboom. (2011) Quantifying summed fullerene nC60 and related transformation products in water using LC LTQ Orbitrap MS and application to environmental samples. Environment International 37:6, pages 1063-1067.
Crossref
K. N. Semenov, N. A. Charykov, V. A. Keskinov, D. G. Letenko, V. A. Nikitin & V. I. Namazbaev. (2011) The synthesis and identification of mixed fullerenol prepared by the direct one-stage oxidation of fullerene black. Russian Journal of Physical Chemistry A 85:6, pages 1009-1015.
Crossref
Nikolay O. Mchedlov-Petrossyan. (2011) Fullerenes in molecular liquids. Solutions in “good” solvents: Another view. Journal of Molecular Liquids 161:1, pages 1-12.
Crossref
M. Yu. Matuzenko, K. N. Semenov, L. V. Tsvetkova, N. A. Charykov, V. A. Keskinov, D. G. Letenko & V. A. Nikitin. (2011) Synthesis and protection effect of fullerenol-d. Protection of Metals and Physical Chemistry of Surfaces 47:3, pages 307-312.
Crossref
Mohmmad Younus Wani, Mohd Ali Hashim, Firdosa Nabi & Maqsood Ahmad Malik. (2011) Nanotoxicity: Dimensional and Morphological Concerns. Advances in Physical Chemistry 2011, pages 1-15.
Crossref
T. Yu. Dolinina, N. S. Rusova & V. B. Luzhkov. (2011) Molecular modeling of hydration properties of hydrophobic ions Li+@C60 and K+@C60. Russian Chemical Bulletin 60:3, pages 400-406.
Crossref
Konstantin N. Semenov, Nikolai A. Charykov & Viktor N. Keskinov. (2011) Fullerenol Synthesis and Identification. Properties of the Fullerenol Water Solutions. Journal of Chemical & Engineering Data 56:2, pages 230-239.
Crossref
Benny F.G. Pycke, Rolf U. Halden, Troy M. Benn, Paul Westerhoff, Rolf U. Halden, Pierre Herckes & Rolf U. Halden. (2011) Strategies for quantifying C60 fullerenes in environmental and biological samples and implications for studies in environmental health and ecotoxicology. TrAC Trends in Analytical Chemistry 30:1, pages 44-57.
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K. N. Semenov, D. G. Letenko, N. A. Charykov, V. A. Nikitin, M. Yu. Matuzenko, V. A. Keskinov, V. N. Postnov & A. A. Kopyrin. (2011) Synthesis and identification of fullerenol prepared by the direct oxidation route. Russian Journal of Applied Chemistry 83:12, pages 2076-2080.
Crossref
Dong Li, John D. Fortner, David R. Johnson, Chun Chen, Qilin Li & Pedro J.J. Alvarez. (2010) Bioaccumulation of 14 C 60 by the Earthworm Eisenia fetida . Environmental Science & Technology 44:23, pages 9170-9175.
Crossref
Andrea J. Tiwari & Linsey C. Marr. (2010) The Role of Atmospheric Transformations in Determining Environmental Impacts of Carbonaceous Nanoparticles. Journal of Environmental Quality 39:6, pages 1883-1895.
Crossref
Ki-Tae Kim, Min-Hee Jang, Jun-Yeol Kim & Sang Don Kim. (2010) Effect of preparation methods on toxicity of fullerene water suspensions to Japanese medaka embryos. Science of The Total Environment 408:22, pages 5606-5612.
Crossref
So-Ryong ChaeAppala R. BadireddyJeffrey Farner BudarzShihong LinYao XiaoMathieu TherezienMark R. Wiesner. (2010) Heterogeneities in Fullerene Nanoparticle Aggregates Affecting Reactivity, Bioactivity, and Transport. ACS Nano 4:9, pages 5011-5018.
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Jérôme Labille & Jonathan Brant. (2010) Stability of nanoparticles in water. Nanomedicine 5:6, pages 985-998.
Crossref
Nowack Bernd. 2010. Nanotechnology. Nanotechnology 1 15 .
K. N. Semenov, N. A. Charykov, V. A. Keskinov, A. K. Pyartman & O. V. Arapov. (2010) Solubility of bromofullerenes C60Br n (n = 6, 8, 24) in aqueous-ethanolic mixtures at 25°C. Russian Journal of Applied Chemistry 83:6, pages 997-1000.
Crossref
Yoshimune Nonomura, Yusuke Morita, Shigeru Deguchi & Sada-atsu Mukai. (2010) Anomalously stable dispersions of graphite in water/acetone mixtures. Journal of Colloid and Interface Science 346:1, pages 96-99.
Crossref
Shigeru Deguchi, Sada-atsu Mukai, Tomoko Yamazaki, Mikiko Tsudome & Koki Horikoshi. (2009) Nanoparticles of Fullerene C 60 from Engineering of Antiquity . The Journal of Physical Chemistry C 114:2, pages 849-856.
Crossref
Konstantin N. Semenov, Nikolai A. Charykov, Viktor A. Keskinov, Andrey K. Piartman, Alexander A. Blokhin & Aleksei A. Kopyrin. (2009) Solubility of Light Fullerenes in Organic Solvents. Journal of Chemical & Engineering Data 55:1, pages 13-36.
Crossref
Lubomír Pospíšil, Miroslav Gál, Magdaléna Hromadová, Jana Bulíčková, Viliam Kolivoška, Josef Cvačka, Kateřina Nováková, Ladislav Kavan, Markéta Zukalová & Lothar Dunsch. (2010) Search for the form of fullerene C60 in aqueous medium. Physical Chemistry Chemical Physics 12:42, pages 14095.
Crossref
Sherrie Elzey, Russell G. Larsen, Courtney Howe & Vicki H. Grassian. 2009. Nanoscale Materials in Chemistry. Nanoscale Materials in Chemistry 681 727 .
Jaesang Lee, Yuri Mackeyev, Min Cho, Dong Li, Jae-Hong Kim, Lon J. Wilson & Pedro J. J. Alvarez. (2009) Photochemical and Antimicrobial Properties of Novel C 60 Derivatives in Aqueous Systems . Environmental Science & Technology 43:17, pages 6604-6610.
Crossref
Carl W. Isaacson, Markus Kleber & Jennifer A. Field. (2009) Quantitative Analysis of Fullerene Nanomaterials in Environmental Systems: A Critical Review. Environmental Science & Technology 43:17, pages 6463-6474.
Crossref
Andrew F. ClementsJoy E. HaleyAugustine M. UrbasAlan KostR. David RauhJane F. BertoneFei WangBrian M. WiersDe GaoTodd S. StefanikAndrew G. MottDavid M. Mackie. (2009) Photophysical Properties of C 60 Colloids Suspended in Water with Triton X-100 Surfactant: Excited-State Properties with Femtosecond Resolution . The Journal of Physical Chemistry A 113:23, pages 6437-6445.
Crossref
Sandra Pérez, Marinel.la Farré & Damià Barceló. (2009) Analysis, behavior and ecotoxicity of carbon-based nanomaterials in the aquatic environment. TrAC Trends in Analytical Chemistry 28:6, pages 820-832.
Crossref
Jie Gao, Sejin Youn, Anna Hovsepyan, Verónica L. Llaneza, Yu Wang, Gabriel Bitton & Jean-Claude J. Bonzongo. (2009) Dispersion and Toxicity of Selected Manufactured Nanomaterials in Natural River Water Samples: Effects of Water Chemical Composition. Environmental Science & Technology 43:9, pages 3322-3328.
Crossref
Xiaojun Chang & Peter J. Vikesland. (2009) Effects of carboxylic acids on nC60 aggregate formation. Environmental Pollution 157:4, pages 1072-1080.
Crossref
J. Lee, S. Mahendra & P. J. J. Alvarez. 2009. Nanotechnology in Construction 3. Nanotechnology in Construction 3 1 14 .
Delina Y. Lyon, David Brown, Eric R. Sundstrom & Pedro J.J. Alvarez. (2008) Assessing the antibiofouling potential of a fullerene-coated surface. International Biodeterioration & Biodegradation 62:4, pages 475-478.
Crossref
Delina Y. Lyon & Pedro J.J. Alvarez. (2008) Fullerene Water Suspension (nC 60 ) Exerts Antibacterial Effects via ROS-Independent Protein Oxidation . Environmental Science & Technology 42:21, pages 8127-8132.
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Qilin Li, Shaily Mahendra, Delina Y. Lyon, Lena Brunet, Michael V. Liga, Dong Li & Pedro J.J. Alvarez. (2008) Antimicrobial nanomaterials for water disinfection and microbial control: Potential applications and implications. Water Research 42:18, pages 4591-4602.
Crossref
John D. Fortner, Jaesang Lee, Jae‐Hong Kim & Joseph B. Hughes. 2008. Nanoscience and Nanotechnology. Nanoscience and Nanotechnology 159 195 .
Paul Westerhoff, Yang Zhang, John Crittenden & Yongsheng Chen. 2008. Nanoscience and Nanotechnology. Nanoscience and Nanotechnology 69 90 .
Zhuo Chen, Paul Westerhoff & Pierre Herckes. (2009) Quantification of C 60 fullerene concentrations in water . Environmental Toxicology and Chemistry 27:9, pages 1852-1859.
Crossref
Dermont Bouchard & Xin Ma. (2008) Extraction and high-performance liquid chromatographic analysis of C60, C70, and [6,6]-phenyl C61-butyric acid methyl ester in synthetic and natural waters. Journal of Chromatography A 1203:2, pages 153-159.
Crossref
Chad T. Jafvert & Pradnya P. Kulkarni. (2008) Buckminsterfullerene’s (C 60 ) Octanol−Water Partition Coefficient ( K ow ) and Aqueous Solubility . Environmental Science & Technology 42:16, pages 5945-5950.
Crossref
Bin Xie, Zhihua Xu, Wenhua Guo & Qilin Li. (2008) Impact of Natural Organic Matter on the Physicochemical Properties of Aqueous C 60 Nanoparticles . Environmental Science & Technology 42:8, pages 2853-2859.
Crossref
Pradnya P. Kulkarni & Chad T. Jafvert. (2007) Solubility of C 60 in Solvent Mixtures . Environmental Science & Technology 42:3, pages 845-851.
Crossref
Laura K. Duncan, Joerg R. Jinschek & Peter J. Vikesland. (2007) C 60 Colloid Formation in Aqueous Systems: Effects of Preparation Method on Size, Structure, and Surface Charge . Environmental Science & Technology 42:1, pages 173-178.
Crossref
John D. Fortner, Doo-Il Kim, Adina M. Boyd, Joshua C. Falkner, Sean Moran, Vicki L. Colvin, Joseph B. Hughes & Jae-Hong Kim. (2007) Reaction of Water-Stable C 60 Aggregates with Ozone . Environmental Science & Technology 41:21, pages 7497-7502.
Crossref
Bernd Nowack & Thomas D. Bucheli. (2007) Occurrence, behavior and effects of nanoparticles in the environment. Environmental Pollution 150:1, pages 5-22.
Crossref
Chao Gu, Chad Ray, Senli Guo & Boris B. Akhremitchev. (2007) Single-Molecule Force Spectroscopy Measurements of Interactions between C 60 Fullerene Molecules . The Journal of Physical Chemistry C 111:35, pages 12898-12905.
Crossref
A. A. Khokhryakov, O. A. Kyzyma, L. A. Bulavin, A. Len, M. V. Avdeev & V. L. Aksenov. (2007) Colloidal structure and stabilization mechanism of aqueous solutions of unmodified fullerene C60. Crystallography Reports 52:3, pages 487-491.
Crossref
Jaesang Lee, John D. Fortner, Joseph B. Hughes & Jae-Hong Kim. (2007) Photochemical Production of Reactive Oxygen Species by C 60 in the Aqueous Phase During UV Irradiation . Environmental Science & Technology 41:7, pages 2529-2535.
Crossref
Shigeru Deguchi & Kaoru Tsujii. (2007) Supercritical water: a fascinating medium for soft matter. Soft Matter 3:7, pages 797.
Crossref
Shigeru Deguchi & Sada-atsu Mukai. (2006) Top-down Preparation of Dispersions of C 60 Nanoparticles in Organic Solvents . Chemistry Letters 35:4, pages 396-397.
Crossref
S. Deguchi, S. Mukai, M. Tsudome & K. Horikoshi. (2006) Facile Generation of Fullerene Nanoparticles by Hand‐Grinding. Advanced Materials 18:6, pages 729-732.
Crossref
Dieter Heymann & Wendy S. Wolbach. 2006. Natural Fullerenes and Related Structures of Elemental Carbon. Natural Fullerenes and Related Structures of Elemental Carbon 191 212 .
J. D. Fortner, D. Y. Lyon, C. M. Sayes, A. M. Boyd, J. C. Falkner, E. M. Hotze, L. B. Alemany, Y. J. Tao, W. Guo, K. D. Ausman, V. L. Colvin & J. B. Hughes. (2005) C 60 in Water:  Nanocrystal Formation and Microbial Response . Environmental Science & Technology 39:11, pages 4307-4316.
Crossref
Nadezhda I. Islamova, Andrey N. Kinchin, Aleksey V. Kozlov & Arkadii M. Kolker. (2005) Solubility of C60 fullerene in o-dichlorobenzene–tetrachloromethane mixtures. Mendeleev Communications 15:2, pages 86-87.
Crossref
Yoko Yamakoshi, Naoki Umezawa, Akemi Ryu, Kumi Arakane, Naoki Miyata, Yukihiro Goda, Toshiki Masumizu & Tetsuo Nagano. (2003) Active Oxygen Species Generated from Photoexcited Fullerene (C 60 ) as Potential Medicines:  O 2 - • versus 1 O 2 . Journal of the American Chemical Society 125:42, pages 12803-12809.
Crossref
G.V Andrievsky, V.K Klochkov, E.L Karyakina & N.O Mchedlov-Petrossyan. (1999) Studies of aqueous colloidal solutions of fullerene C60 by electron microscopy. Chemical Physics Letters 300:3-4, pages 392-396.
Crossref
Nikolay O. Mchedlov-Petrossyan, Vladimir K. Klochkov, Grigoriy V. Andrievsky, Eleonora L. Karyakina & Aleksandr A. Ishchenko. (1999) Interaction between cationic dyes and colloidal particles in a C60 hydrosol. Mendeleev Communications 9:2, pages 63-64.
Crossref
Paul Ruelle & Ulrich W. Kesselring. (1998) The Hydrophobic Effect. 1. A Consequence of the Mobile Order in H-Bonded Liquids. Journal of Pharmaceutical Sciences 87:8, pages 987-997.
Crossref

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