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Research Articles

Learning from a dark brew: how traditional coffee-making can inspire the search for improved colloidal stability

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Pages 790-798 | Received 22 Nov 2022, Accepted 09 Feb 2023, Published online: 25 Feb 2023

References

  • Vucinich, W. S. The Nature of Balkan Society under Ottoman Rule. Slavic Rev. 1962, 21, 597–616. DOI: 10.2307/3000575.
  • Lory, B. The Ottoman Legacy in the Balkans. In Entangled Histories of the Balkans – Volume Three, Daskalov, R., Vezenkov, A. Eds.; Brill, Leiden, NL, 2015, pp. 355–405
  • Resanović, D. From Three Ottoman Gates to Three Serbian Sites of Memory: The Performative Rewriting of Belgrade from 1878 Until Today. History Anthropol. 2019, 30, 393–405.
  • Schick, I. C. The Iconicity of Islamic Calligraphy in Turkey. Res: Anthropol. Aesthet. 2008, 53–54, 211–224. DOI: 10.1086/RESvn1ms25608818.
  • Günergun, F. Timekeepers and Sufi Mystics: Technical Knowledge Bearers of the Ottoman Empire. Technol. Cult. 2021, 62, 348–372. DOI: 10.1353/tech.2021.0063.
  • Bazzaz, S.; Batsaki, Y. Angelov, D. (Eds.). Imperial Geographies in Byzantine and Ottoman Space. In Hellenic Studies Series 56; Center for Hellenic Studies, Washington, DC, 2013.
  • Rahmani, A.; Moghanipour, M. R. Recognition of Ottoman Carpets with Emphasis on the Influential Factors of Iranian Art on Its Formation and Expansion. J. Islamic Crafts 2021, 5, 1–18. DOI: 10.52547/jic.5.1.1.
  • Todorović, M. The Problems of Studying Ottoman Heritage in Serbia. J. Balkan Black Sea Stud. 2021, 4, 213–237.
  • Marković, T. Ottoman Legacy and Oriental Self in Serbian Opera. Studia Musicologica 2016, 57, 391–402. DOI: 10.1556/6.2016.57.3-4.7.
  • Kutlay, E. Elements of Ottoman Influence in Serbian Music. In: Belgrade 1521 – 1867, D. Amedoski, Ed.; Ministry of Education, Science and Technological Development of the Republic of Serbia and Yunus Emre Enstitüsü – Turkish Cultural Centre, Belgrade, 2018, pp. 437–452
  • Yilmaz, S.; Yosmaoglu, I. K. Fighting the Spectres of the past: Dilemmas of Ottoman Legacy in the Balkans and the Middle East. Middle Eastern Stud. 2008, 44, 677–693. DOI: 10.1080/00263200802285369.
  • Parras, P.; Martinez-Tome, M.; Jimenez, A. M.; Murcia, M. A. Antioxidant Capacity of Coffee of Several Origins Brewed following Three Different Procedures. Food Chem. 2007, 102, 582–592. DOI: 10.1016/j.foodchem.2006.05.037.
  • Küçükkömürler, S.; Özgen, L. Coffee and Turkish Coffee Culture. Pak. J. Nutr. 2009, 8, 1693–1700.
  • Weinberg, A. B.; Bealer, B. K. The World of Caffeine: The Science and Culture of the World’s Most Popular Drug; Routledge, New York, NY, 2001; p. 3.
  • Bennett, A. W.; Bonnie, K. B. The World of Caffeine; Routledge, New York, NY, 2001.
  • Wild, A. Coffee: A Dark History; Fourth Estate: New York, NY, 2004, pp. 52–53.
  • Meyers, H. Suave Molecules of Mocha—Coffee, Chemistry, and Civilization. New Partisan, 7 March 2005. http://newpartisan.squarespace.com/home/suave-molecules-of-mocha-coffee-chemistry-and-civilization.html.
  • Fotić, A. The Introduction of Coffee and Tobacco to the Mid-West Balkans. Acta Orientalia Academiae Scientarium Hung 2011, 64, 89–100. DOI: 10.1556/AOrient.64.2011.1.6.
  • Hattox, R. S. Coffee and Coffeehouses: The Origins of a Social Beverage in the Medieval near East. University of Washington Press, Seattle, WA, 1988.
  • Gostin, A.-I.; Bogueva, D. Chapter 2 - History of Eating Habits in the Balkans. In: Nutritional and Health Aspects of Traditional and Ethnic Foods, Nutritional and Health Aspects of Food in the Balkans, Gostin, A.-I., Bogueva, D., Kakurinov, V., Ed.; Academic Press, Amsterdam, 2021; pp. 9–20
  • Ranić, M.; Konić-Ristić, A.; Takić, M.; Glibetić, M.; Pavlović, Z.; Dimitrijević-Branković, S. Nutrient Profile of Black Coffee Consumed in Serbia” Filling a Gap in the Food Composition Database. J. Food Compos. Anal. 2014, 4, 61–69. DOI: 10.1016/j.jfca.2014.11.008.
  • Croegaert, A. Who Has Time for Ćejf? Postsocialist Migration and Slow Coffee in Neoliberal Chicago. Am. Anthropol. 2011, 113, 463–477. DOI: 10.1111/j.1548-1433.2011.01354.x.
  • Çaksu, A. Turkish Coffee as a Political Drink from the Early Modern Period to Today. In Kebab to Ćevapčići: Foodways in (Post-)Ottoman Europe, Blaszczyk, A., Rohdewald, S., Eds.; Otto Harrassowitz, Wiesbaden, 2018; pp. 124–143
  • Petrović, S. M.; Savić, S. R.; Zvezdanović, J. B.; Mladenović-Ranisavljević, I.; Cvetković, D. J.; Cvetanović, A. D. Benefits and Risks of Commercially Available Coffee Beverages from Western Balkan. Chem. Pap 2020, 74, 847–857. DOI: 10.1007/s11696-019-00916-5.
  • Vlahović, B.; Jeločnik, M.; Potrebić, V. Preferences of Coffee Consumers on Serbian Market. Econ. Agric. 2012, 59, 37–49.
  • Šehović, A. Spatium Memoriae [Što te nema] 2006– 2020, 2022. stotenema.com.
  • Stefansson, A. H. Coffee after Cleansing? Co-Existence, co-Operation, and Communication in Post-Conflict Bosnia And Herzegovina. Focaal 2010, 2010, 62–76. DOI: 10.3167/fcl.2010.570105.
  • Topik, S. The world coffee market in the eighteenth and nineteenth centuries, from colonial to national regimes. Working Papers of the Global Economic History Network (GEHN), 2004, 4, 1–34.
  • Uskoković, V. Ion-Doped Hydroxyapatite: An Impasse or the Road to Follow? Ceram. Int. 2020, 46, 11443–11465. DOI: 10.1016/j.ceramint.2020.02.001.
  • Uskoković, V. Indigenous Sand Drawings as Predictors of the Cell Response to Nanoparticle Therapy. Substantia 2022, 6, 27–42. DOI: 10.36253/Substantia-1586.
  • Low, W.; Davenport, E. Mainstreaming Fair Trade: Adoption, Assimilation, Appropriation. J. Strat. Market. 2006, 14, 315–327. DOI: 10.1080/09652540600947912.
  • Öğüt, ŞT. Material Culture of Tea in Turkey: Transformations of Design through Tradition, Modernity and Identity. The Design Journal 2009, 12, 339–363. DOI: 10.2752/146069209X12530928086405.
  • Ozge, M. C. Tradition and Innovation: A Study on Reconfiguration of Product Language through Innovative Approaches. In: Design and Semantics of Form and Movement. DeSForM 2012: Meaning, Matter, Making, Chen, L.-L., Djajadiningrat, T., Feijs, L., Fraser, S., Kyffin, S. , Steffen, D., Eds.; Victoria University of Wellington, New Zealand. Technische Universiteit Eindhoven: Eindhoven, 2012; pp. 150–159
  • Caputo, I.; Bozzola, M.; Giorgi, C. D. A Cup of Coffee between Tradition and New Cross-Cultural Experimentations. Pages Arts Design 2021, 14, 46–68.
  • Mithad, M. Prava bosanska kafa. Ljubušaci, September 27, 2017. http://ljubusaci.com/2017/09/27/prava-bosanska-kafa/.
  • Uskoković, V.; Ignjatović, N.; Petranović, N. Synthesis and Characterization of Hydroxyapatite-Collagen Biocomposite Materials. Mat. Sci. Forum 2003, 413, 269–274. DOI: 10.4028/www.scientific.net/MSF.413.269.
  • Uskoković, V.; Desai, T. A. Calcium Phosphate Nanoparticles: A Future Therapeutic Platform for the Treatment of Osteomyelitis? Ther. Deliv. 2013, 4, 643–645. DOI: 10.4155/tde.13.33.
  • Uskoković, V.; Ignjatović, N.; Škapin, S.; Uskoković, D. P. Germanium-Doped Hydroxyapatite: Synthesis and Characterization of a New Substituted Apatite. Ceram. Int. 2022, 48, 27693–27702. DOI: 10.1016/j.ceramint.2022.06.068.
  • Espositi, L. D.; Marković, S.; Ignjatović, N.; Panseri, S.; Montesi, M.; Adamiano, A.; Fosca, M.; Rau, J.; Uskoković, V.; Iafisco, M. Thermal Crystallization of Amorphous Calcium Phosphate Combined with Citrate and Fluoride Doping: A Novel Route to Produce Hydroxyapatite Bioceramics. J. Mater. Chem. B 2021, 9, 4832–4845.
  • Michał, W.; Ewa, D.; Tomasz, C. Lecithin-Based Wet Chemical Precipitation of Hydroxyapatite Nanoparticles. Colloid Polym. Sci. 2015, 293, 1561–1568. DOI: 10.1007/s00396-015-3557-0.
  • Vukomanović, M.; Škapin, S.; Jančar, B.; Maksin, T.; Ignjatović, N.; Uskoković, V.; Uskoković, D. Poly(D,L-Lactide-Co-Glycolide)/Hydroxyapatite Core-Shell Nanospheres. Part 1: A Multifunctional System for Controlled Drug Delivery. Coll. Surf. B: Biointerfaces 2011, 82, 404–413.
  • Tung, M. S. Surface Properties of Hydroxyapatite in Fluoride Solution. Colloids Surf. 1983, 6, 283–285. DOI: 10.1016/0166-6622(83)80019-5.
  • Uskoković, V. The Role of Hydroxyl Channel in Defining Selected Physicochemical Peculiarities Exhibited by Hydroxyapatite. RSC Adv. 2015, 5, 36614–36633. DOI: 10.1039/C4RA17180B.
  • Borum-Nicholas, L.; Wilson, O. C. Surface Modification of Hydroxyapatite. Part I. Dodecyl Alcohol. Biomaterials 2003, 24, 3671–3679. DOI: 10.1016/s0142-9612(03)00239-4.
  • Lee, H. J.; Choi, H. W.; Kim, K. J.; Lee, S. C. Modification of Hydroxyapatite Nanosurfaces for Enhanced Colloidal Stability and Improved Interfacial Adhesion in Nanocomposites. Chem. Mater. 2006, 18, 5111–5118. DOI: 10.1021/cm061139x.
  • Tanaka, H.; Yasukawa, A.; Kandori, K.; Ishikawa, T. Modification of Calcium Hydroxyapatite Using Alkyl Phosphates. Langmuir 1997, 13, 821–826. DOI: 10.1021/la960422f.
  • Fang, Y.; Agrawal, D. K.; Roy, D. M.; Roy, R.; Brown, P. W. Ultrasonically Accelerated Synthesis of Hydroxyapatite. J. Mater. Res. 1992, 7, 2294. DOI: 10.1557/JMR.1992.2294.
  • Uskoković, V.; Uskoković, D. P. Nanosized Hydroxyapatite and Other Calcium Phosphates: Chemistry of Formation and Application as Drug and Gene Delivery Agents. J. Biomed. Mater. Res. B Appl. Biomater. 2011, 96, 152–191. DOI: 10.1002/jbm.b.31746.
  • Larsen, M. J. An Investigation of the Theoretical Background for the Stability of the Calcium-Phosphate Salts and Their Mutual Conversion in Aqueous Solutions. Arch. Oral Biol. 1986, 31, 757–761. DOI: 10.1016/0003-9969(86)90008-7.
  • Uskoković, V.; Marković, S.; Veselinović, L.; Škapin, S.; Ignjatović, N.; Uskoković, D. P. Insights into the Kinetics of Thermally Induced Crystallization of Amorphous Calcium Phosphate. Phys. Chem. Chem. Phys. 2018, 20, 29221–29235.
  • Matusiak, J.; Grzadka, E. Stability of Colloidal Systems – a Review of the Stability Measurements Methods. Ann. Univ. Mariae Curie-Sklodowska Lublin – Polonia 2017, 72, 33–45. DOI: 10.17951/aa.2017.72.1.33.
  • Uskoković, V.; Tang, S.; Wu, V. M. On Grounds of the Memory Effect in Amorphous and Crystalline Apatite: Kinetics of Crystallization and Biological Response. ACS Appl. Mater. Interfaces. 2018, 10, 14491–14508. DOI: 10.1021/acsami.8b02520.
  • Salahuddin, N.; Ibrahim, E. M.; El-Kemary, M. Different Methods for Preparation of Hydroxyapatite Nanostructures. Biointerface Res. Appl. Chem. 2023, 13, 236.
  • Konnova, S.; Fakhrullin, R.; Akhatova, F.; Lama, N.; Lvov, Y.; Cavallaro, G.; Lazzara, G.; Fakhrullin, R. Magnetic Coiffure: Engineering of Human Hair Surfaces with Polyelectrolyte-Stabilised Magnetite Nanoparticles. Chem. Eng. J. Adv. 2022, 12, 100389. DOI: 10.1016/j.ceja.2022.100389.
  • Seal, S.; Doblhoff-Dier, K.; Meyer, J. Dielectric Decrement for Aqueous NaCl Solutions: Effect of Ionic Charge Scaling in Nonpolarizable Water Force Fields. J. Phys. Chem. B 2019, 123, 9912–9921.
  • Takács, D.; Tomšič, M.; Szilagyi, I. Effect of Water and Salt on the Colloidal Stability of Latex Particles in Ionic Liquid Solutions. Colloids Interfaces 2022, 6, 2.
  • Kibalczyc, W.; Zielenkiewicz, A.; Zielenkiewicz, W. Calorimetric Investigations of Calcium Phosphate Precipitation in Relation to Solution Composition and Temperature. Thermochim. Acta 1988, 131, 47–55.
  • Puzio, B.; Manecki, M.; Kwaśniak-Kominek, M. Transition from Endothermic to Exothermic Dissolution of Hydroxyapatite Ca5(PO4)3OH–Johnbaumite Ca5(AsO4)3OH Solid Solution Series at Temperatures Ranging from 5 to 65 °C. Minerals 2018, 8, 281.
  • Mocanu, A.; Cadar, O.; Frangopol, P. T.; Petean, I.; Tomoaia, G.; Paltinean, G.-A.; Racz, C. P.; Horovitz, O.; Tomoaia-Cotisel, M. Ion Release from Hydroxyapatite and Substituted Hydroxyapatites in Different Immersion Liquids: In Vitro Experiments and Theoretical Modelling Study. Royal Soc. Open Sci. 2021, 8, 201785.
  • Janusz, W.; Skwarek, E. Adsorption of the Tartrate Ions in the Hydroxyapatite/Aqueous Solution of NaCl System. Materials 2021, 14, 3039.
  • Skartsila, K.; Spanos, N. Surface Characterization of Hydroxyapatite: Potentiometric Titrations Coupled with Solubility Measurements. J. Coll. Interface Sci 2007, 308, 405–412.
  • Dukhno, O.; Przybilla, F.; Muhr, V.; Buchner, M.; Hirsch, T.; Mély, Y. Time-Dependent Luminescence Loss for Individual Upconversion Nanoparticles upon Dilution in Aqueous Solution. Nanoscale 2018, 10, 15904–15910. DOI: 10.1039/c8nr03892a.
  • Lahtinen, S.; Lyytikäinen, A.; Päkkilä, H.; Hömppi, E.; Perälä, N.; Lastusaari, M.; Soukka, T. Disintegration of Hexagonal NaYF4:Yb3+,Er3+ Upconverting Nanoparticles in Aqueous Media: The Role of Fluoride in Solubility Equilibrium. J. Phys. Chem. C 2016, 121, 656–665.
  • Oliva, J.; Cama, J.; Cortina, J. L.; Ayora, C.; De Pablo, J. Biogenic Hydroxyapatite (Apatite IITM) Dissolution Kinetics and Metal Removal from Acid Mine Drainage. J. Hazard. Mater. 2012, 213-214, 7–18.
  • Uskoković, V. Disordering the Disorder as the Route to a Higher Order: Incoherent Crystallization of Calcium Phosphate through Amorphous Precursors. Crystal Growth Design 2019, 19, 4340–4357.
  • Uskoković, V. X-Ray Photoelectron and Ion Scattering Spectroscopic Surface Analyses of Amorphous and Crystalline Calcium Phosphate Nanoparticles with Different Chemical Histories. Phys. Chem. Chem. Phys. 2020, 2020, 5531–5547.
  • Uskoković, V. Toward Functionalization without Functional Agents: An X-Ray Photoelectron Spectroscopy Study, Coll. Surf. A 2022, 651, 129676.
  • Bengtsson, Å.; Shchukarev, A.; Persson, P.; Sjöberg, S. A Solubility and Surface Complexation Study of a Non-Stoichiometric Hydroxyapatite. Geochim. Cosmochim. Acta 2009, 73, 257–267.
  • Chu, Y.; Chen, J.; Haso, F.; Gao, Y.; Szymanowski, J. E. S.; Burns, P. C.; Liu, T. Expanding the Schulze-Hardy Rule and the Hofmeister Series to Nanometer-Scaled Hydrophilic Macroions. Chemistry 2018, 24, 5479–5483. DOI: 10.1002/chem.201706101.
  • Uskoković, V.; Matijević, E. Uniform Particles of Pure and Silica Coated Cholesterol. J. Coll. Interface Sci. 2007, 315, 500–511.

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