Tweney, Ryan D. (2006). "Discovering Discovery: How Faraday Found the First Metallic Colloid". Perspectives on Science. 14: 97–121. doi:10.1162/posc.2006.14.1.97. S2CID55882753.
"X. Liquid diffusion applied to analysis". Philosophical Transactions of the Royal Society of London. 151: 183–224. 1861. doi:10.1098/rstl.1861.0011. S2CID186208563.. Page 183: "As gelatine appears to be its type, it is proposed to designate substances of the class as colloids, and to speak of their peculiar form of aggregation as the colloidal condition of matter."
de Swaan Arons, J.; Diepen, G. A. M. (2010). "Immiscibility of gases. The system He-Xe: (Short communication)". Recueil des Travaux Chimiques des Pays-Bas. 82 (8): 806. doi:10.1002/recl.19630820810.
Bean, Elwood L.; Campbell, Sylvester J.; Anspach, Frederick R.; Ockershausen, Richard W.; Peterman, Charles J. (1964). "Zeta Potential Measurements in the Control of Coagulation Chemical Doses [with Discussion]". Journal (American Water Works Association). 56 (2): 214–227. doi:10.1002/j.1551-8833.1964.tb01202.x. JSTOR41264141.
Roland, I; Piel, G; Delattre, L; Evrard, B (2003). "Systematic characterisation of oil-in-water emulsions for formulation design". International Journal of Pharmaceutics. 263 (1–2): 85–94. doi:10.1016/S0378-5173(03)00364-8. PMID12954183.
Mengual, O (1999). "Characterisation of instability of concentrated dispersions by a new optical analyser: the TURBISCAN MA 1000". Colloids and Surfaces A: Physicochemical and Engineering Aspects. 152 (1–2): 111–123. doi:10.1016/S0927-7757(98)00680-3.
Snabre, Patrick; Pouligny, Bernard (2008). "Size Segregation in a Fluid-like or Gel-like Suspension Settling under Gravity or in a Centrifuge". Langmuir. 24 (23): 13338–47. doi:10.1021/la802459u. PMID18986182.
Luck, Werner; Klier, Manfred; Wesslau, Hermann (1963). "Über Bragg-Reflexe mit sichtbarem Licht an monodispersen Kunststofflatices. II". Berichte der Bunsengesellschaft für Physikalische Chemie. 67 (1): 84–85. doi:10.1002/bbpc.19630670114.
Hiltner, P.A.; Krieger, I.M. (1969). "Diffraction of light by ordered suspensions". J. Phys. Chem. 73 (7): 2306. doi:10.1021/j100727a049.
Liu, Xuesong; Li, Zejing; Tang, Jianguo; Yu, Bing; Cong, Hailin (9 September 2013). "Current status and future developments in preparation and application of colloidal crystals". Chemical Society Reviews. 42 (19): 7774–7800. doi:10.1039/C3CS60078E. PMID23836297.
Karpińska, Aneta; Zgorzelska, Alicja; Kwapiszewska, Karina; Hołyst, Robert (December 2022). "Entanglement of polymer chains in hypertonic medium enhances the delivery of DNA and other biomacromolecules into cells". Journal of Colloid and Interface Science. 627: 270–282. doi:10.1016/j.jcis.2022.07.040.
Alonso, U.; T. Missana; A. Patelli; V. Rigato (2007). "Bentonite colloid diffusion through the host rock of a deep geological repository". Physics and Chemistry of the Earth, Parts A/B/C. 32 (1–7): 469–476. Bibcode:2007PCE....32..469A. doi:10.1016/j.pce.2006.04.021.
Wold, Susanna; Trygve Eriksen (2007). "Diffusion of humic colloids in compacted bentonite". Physics and Chemistry of the Earth, Parts A/B/C. 32 (1–7): 477–484. Bibcode:2007PCE....32..477W. doi:10.1016/j.pce.2006.05.002.
Alonso, U.; T. Missana; A. Patelli; V. Rigato (2007). "Bentonite colloid diffusion through the host rock of a deep geological repository". Physics and Chemistry of the Earth, Parts A/B/C. 32 (1–7): 469–476. Bibcode:2007PCE....32..469A. doi:10.1016/j.pce.2006.04.021.
Wold, Susanna; Trygve Eriksen (2007). "Diffusion of humic colloids in compacted bentonite". Physics and Chemistry of the Earth, Parts A/B/C. 32 (1–7): 477–484. Bibcode:2007PCE....32..477W. doi:10.1016/j.pce.2006.05.002.
Bean, Elwood L.; Campbell, Sylvester J.; Anspach, Frederick R.; Ockershausen, Richard W.; Peterman, Charles J. (1964). "Zeta Potential Measurements in the Control of Coagulation Chemical Doses [with Discussion]". Journal (American Water Works Association). 56 (2): 214–227. doi:10.1002/j.1551-8833.1964.tb01202.x. JSTOR41264141.
Snabre, Patrick; Pouligny, Bernard (2008). "Size Segregation in a Fluid-like or Gel-like Suspension Settling under Gravity or in a Centrifuge". Langmuir. 24 (23): 13338–47. doi:10.1021/la802459u. PMID18986182.
Liu, Xuesong; Li, Zejing; Tang, Jianguo; Yu, Bing; Cong, Hailin (9 September 2013). "Current status and future developments in preparation and application of colloidal crystals". Chemical Society Reviews. 42 (19): 7774–7800. doi:10.1039/C3CS60078E. PMID23836297.
Tweney, Ryan D. (2006). "Discovering Discovery: How Faraday Found the First Metallic Colloid". Perspectives on Science. 14: 97–121. doi:10.1162/posc.2006.14.1.97. S2CID55882753.
"X. Liquid diffusion applied to analysis". Philosophical Transactions of the Royal Society of London. 151: 183–224. 1861. doi:10.1098/rstl.1861.0011. S2CID186208563.. Page 183: "As gelatine appears to be its type, it is proposed to designate substances of the class as colloids, and to speak of their peculiar form of aggregation as the colloidal condition of matter."
Israelachvili, Jacob N. (2011). Intermolecular and surface forces (4rd ed.). Burlington, MA: Academic Press. ISBN978-0-08-092363-5. OCLC706803091.
International Union of Pure and Applied Chemistry. Subcommittee on Polymer Terminology; Jones, Richard G. (2009). Compendium of polymer terminology and nomenclature: IUPAC recommendations, 2008. Cambridge: Royal Society of Chemistry. ISBN978-1-84755-942-5. OCLC406528399.
Weil, Ray; Brady, Nyle C. (11 October 2018). Elements of the nature and properties of soils (Fourth ed.). New York, NY. ISBN978-0-13-325459-4. OCLC1035317420.{{cite book}}: CS1 maint: location missing publisher (link)