화학공학소재연구정보센터
Journal of Industrial and Engineering Chemistry, Vol.96, 1-33, April, 2021
The universal usefulness of stearic acid as surface modifier: applications to the polymer formulations and composite processing
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This work aims to review the literature studies based on the application of stearic acid (SA) in a large range of industrial and academic formulations, given the benefits arisen from this additive on the functional and structural properties of the manufactured products. The SA is characterized by a long hydrocarbon non-polar chain endowed with a terminal polar carboxyl group. In primary usefulness consists in a lubricant effect, by positively affecting the materials workability, and in the ability to interact with various surfaces through physical or chemical mechanisms, by creating layer structures. In these conditions, a reduction of the surface energy and an increase of the hydrophobic character have been promoted in the treated surfaces. These aspects have played an interesting role in the compounding phase of a composite system, by promoting a reduction of the mixture viscosity, an increase of filler/ matrix compatibility, and an improvement of filler dispersion.
  1. Emptoz G, La naissance de la lipochimie industrielle au cours du XIXe siecle., Neuilly-sur-Seine (FRA), 1991.
  2. Kelm GR, Wickett RR, The role of fatty acids in cosmetic technology, Fatty acids, Elsevier, Amsterdam, pp.385 2017.
  3. Katdare A, Thakkar S, Dhepale S, Khunt D, Misra M, Nutrition, 65, 138 (2019)
  4. Hepburn C, Rubber compounding ingredients - need, theory and innovation part II, (1997).
  5. Yuan Y, Zhang N, Tao W, Cao X, He Y, Renew. Sust. Energ. Rev., 29, 482 (2014)
  6. Pantoja M, Alvarado T, Cakmaka M, Cavicchi KA, Polymer, 153, 131 (2018)
  7. Nyborg L, Carlstrom E, Warren A, Bertilsson H, Powder Metall., 41, 41 (1998)
  8. Liu J, Yang H, Ren B, Rong Y, Xi X, Lu Y, Zhang Y, Yang J, Ceram. Int., 46, 7149 (2020)
  9. Das A, Stockelhuber KS, Jurk R, Jehnichen D, Heinrich G, Appl. Clay Sci., 51, 117 (2011)
  10. Panampilly B, Thomas S, Polym. Eng. Sci., 53(6), 1337 (2013)
  11. Ahmad MU, Fatty acids: chemistry, synthesis, and applications, Elsevier, London, UK, 2017.
  12. Mishra S, Tyagi VK, J. Surfactants Deterg., 11, 167 (2008)
  13. Loehle S, Matta C, Minfray C, Le Mogne T, Martin JM, Iovine R, Obara Y, Miura R, Miyamoto A, Tribol. Lett., 53, 319 (2014)
  14. Hernandez Y, Lozano T, Morales-Cepeda AB, Navarro-Pardo F, Angeles ME, Morales-Zamudio L, Melo-Banda JA, Sanchez-Valdes S, Martinez-Colunga G, Rodriguez F, Polym. Eng. Sci., 59, E279 (2019)
  15. Achilleos EC, Georgiou G, Hatzikiriakos SG, J. Vinyl Addit. Technol., 8, 7 (2002)
  16. Anneken DJ, Both S, Christoph R, et al., Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim, Germany, 2006.
  17. Fernandez-Moya V, Martinez-Force E, Garces R, J. Agric. Food Chem., 53, 5326 (2005)
  18. Bergelson LD, Dyatlovitskaya EV, Voronkova VV, J. Chromatogr. A, 15, 191 (1964)
  19. Gros AT, Feuge RO, J. Am. Oil Chem. Soc., 29, 313 (1952)
  20. Foreman HD, Brown JB, Oil Soap., 21, 183 (1944)
  21. Ralston AW, Hoerr CW, J. Org. Chem., 7, 546 (1942)
  22. Mukerjee P, Mysels KJ, Critical micelle concentrations of aqueous surfactant systems, (1971).
  23. Kanicky JR, Shah DO, J. Colloid Interface Sci., 256(1), 201 (2002)
  24. Hossain MS, Berg S, Bergstrom CAS, Larsson P, AAPS Pharm. Sci. Tech., 20, 1 (2019)
  25. Tzocheva SS, Kralchevsky PA, Danov KD, Georgieva GS, Post AJ, Ananthapadmanabhan KP, J. Colloid Interface Sci., 369, 274 (2012)
  26. Kanicky JR, Shah DO, Langmuir, 19(6), 2034 (2003)
  27. Wellen BA, Lach EA, Allen HC, Phys. Chem. Chem. Phys., 19, 26551 (2017)
  28. Lestari S, Maki-Arvela P, Simakova I, Beltramini J, Lu GQM, Murzin DY, Catal. Lett., 130(1-2), 48 (2009)
  29. Hollak SAW, Bitter JH, Van Haveren J, De Jong HP, Van Es DS, RSC Adv., 2, 9387 (2012)
  30. Snare M, Kubickova I, Maki-Arvela P, Eranen K, Murzin DY, Ind. Eng. Chem. Res., 45(16), 5708 (2006)
  31. Dembitsky VM, Srebnik M, Prog. Lipid Res., 41, 315 (2002)
  32. McKay AF, Bader AR, J. Org. Chem, 13, 75 (1948)
  33. Dembitsky VM, Kuklev DV, Acetylenic epoxy fatty acids, Fatty acids, Elsevier, pp.121 2017.
  34. Auscher MC, Fulchiron R, Fougerouse N, Perie T, Cassagnau P, Ceram. Int., 43, 16950 (2017)
  35. McNulty TF, Shanefield DJ, Danforth SC, Safari A, J. Am. Ceram. Soc., 82, 1757 (1999)
  36. Lu L, Cai J, Rrost RL, Spectroc. Acta Pt. A-Molec. Biomolec. Spectr., 75, 960 (2010)
  37. Pukanszky B, Fekete E, Tudos F, Makromol. Chemie. Macromol. Symp., 28, 165 (1989)
  38. Cai M, Zeng HY, Jiao MR, Cheng QT, Zhu SP, Jiang JX, Proc. 5th Int. Conf. Mach. Mater. Sci. Eng. Appl. MMSE 2015, 495 (2016).
  39. Cao Z, Daly M, Clemence L, Geever LM, Major I, Higginbotham CL, Devine DM, Appl. Surf. Sci., 378, 320 (2016)
  40. Mihajlovic S, Sekulic Z, Dakovic A, Vucinic D, Jovanovic V, Stojanovic J, Surface properties of natural calcite filler treated with stearic acid, (2009).
  41. Sari A, Soylak M, J. Serbian Chem. Soc., 72, 485 (2007)
  42. Huang HH, Tian M, Yang J, Li HX, Liang WL, Zhang LQ, Li XL, J. Appl. Polym. Sci., 107(5), 3325 (2008)
  43. Chen X, Wang Z, Wu J, J. Polym. Res., 25, 1 (2018)
  44. Loehle S, Universite de Lyon, 2014.
  45. Dong Z, Wan Y, Yang S, Zhang J, Tribol. Lett., 50, 299 (2013)
  46. Simic R, Kalin M, Appl. Surf. Sci., 283, 460 (2013)
  47. Fischer DA, Hu ZS, Hsu SM, Tribol. Lett., 3, 35 (1997)
  48. Bell PW, Amand M, Fan X, Enick RM, Roberts CB, Langmuir, 21(25), 11608 (2005)
  49. Liang SH, Yu T, Liu DP, Wang WX, Wang YP, Han XF, J. Appl. Phys., 07C115 (2011).
  50. Chan TY, Lin ST, J. Am. Ceram. Soc., 78, 2746 (1995)
  51. Liu J, Zhang X, Lu X, Lin A, Li X, Zhang Z, Mater. Res. Express., 6, 105348 (2019)
  52. Dong Z, Wan Y, Yang S, Qi C, Zhang J, J. Sol-Gel Sci. Technol., 66, 460 (2013)
  53. Kalin M, Roman E, Vizintin J, Thin Solid Films, 515(7-8), 3644 (2007)
  54. Simic R, Kalin M, Kovac J, Jaksa G, Appl. Surf. Sci., 363, 466 (2016)
  55. Tingle ED, Trans. Faraday Soc., 46, 93 (1950)
  56. Tingle ED, Trans. Faraday Soc., 46, 93 (1950)
  57. Buckley DH, Surface effects in adhesion, friction, wear and lubrication, Elsevier, Amsterdam, 1981.
  58. Ulman A, Chem. Rev., 96(4), 1533 (1996)
  59. Lim MS, Feng K, Chen XQ, Wu NQ, Raman A, Nightingale J, Gawalt ES, Korakakis D, Hornak LA, Timperman AT, Langmuir, 23(5), 2444 (2007)
  60. Przedlacki M, Kajdas C, Tribol. Trans., 49, 202 (2006)
  61. Sahoo RR, Biswas SK, J. Colloid Interface Sci., 333(2), 707 (2009)
  62. Zurcher S, Graule T, J. European Ceram. Soc., 25, 863 (2005)
  63. Kajdas C, Wear, 116, 167 (1987)
  64. Kajdas CK, Tribol. Int. 337 (2005).
  65. Kasai PH, Tribol. Lett., 13, 155 (2002)
  66. Shukla N, Gellman AJ, Gui J, Langmuir, 16(16), 6562 (2000)
  67. Fischer DA, Hu ZS, Hsu SM, Tribol. Lett., 3, 41 (1997)
  68. Su YY, Tribol. Int., 30, 423 (1997)
  69. Crowell JE, Chen JG, Yates JT, J. Chem. Phys., 85, 3111 (1986)
  70. Hsu SM, Zhang J, Yin Z, Tribol. Lett., 131 (2002).
  71. Fekete E, Pukanszky B, Toth A, Bertoti I, J. Colloid Interface Sci., 135, 200 (1990)
  72. Jahanmir S, Wear, 102, 331 (1985)
  73. Lundgren SM, Persson K, Mueller G, Kronberg B, Clarke J, Chtaib M, Claesson PM, Langmuir, 23(21), 10598 (2007)
  74. Ruths M, Lundgren S, Danerlov K, Persson K, Langmuir, 24(4), 1509 (2008)
  75. Papay AG, J. Am. Soc. Lubr. Eng., 39, 419 (1983)
  76. Wood MH, Casford MT, Steitz R, Zarbakhsh A, Welbourn RJL, Clarke SM, Langmuir, 32(2), 534 (2016)
  77. Russell JA, Campbell WE, Burton RA, Ku PM, ASLE Trans., 8, 48 (1965)
  78. Ratoi M, Anghel V, Bovington C, Spikes HA, Tribol. Int., 33, 241 (2000)
  79. Gomari KAR, Hamouda AA, Denoyel R, Colloids Surf. A: Physicochem. Eng. Asp., 287, 29 (2006)
  80. Marosi G, Bertalan G, Rusznak I, Anna P, Colloids and Surfaces., 23, 185 (1989)
  81. Chen C, He Y, Du Z, Yuan H, Wu Y, Mater. Lett., 110, 264 (2013)
  82. Nam SH, Boo JH, Thin Solid Films, 35 (2013).
  83. Arfaoui MA, Dolez PI, Dube M, David E, J. Text. Inst., 110, 16 (2019)
  84. Hogness TR, J. Am. Chem. Soc., 43, 1621 (1921)
  85. Wilhelmy L, Ann. Der Phys. Und Chemie., 195, 177 (1863)
  86. Wenzel RN, Ind. Eng. Chem., 28, 988 (1936)
  87. De Gennes PG, Mod. Phys., 57, 827 (1985)
  88. Papirer E, Schultz J, Turchi C, Eur. Polym. J., 20, 1155 (1984)
  89. Anastasiadis SH, Chen JK, Koberstein JT, Siegel AF, Sohn JE, Emerson JA, J. Colloid Interface Sci., 119, 55 (1987)
  90. Coucoulas LM, Dawe RA, J. Colloid Interface Sci., 103, 230 (1985)
  91. Elmendorp JJ, Polym. Eng. Sci., 26, 418 (1986)
  92. Luciani A, Champagne MF, Utracki LA, J. Polym. Sci. B: Polym. Phys., 35(9), 1393 (1997)
  93. Owens DK, Wendt RC, J. Appl. Polym. Sci., 13, 1741 (1969)
  94. Wu S, J. Macromol. Sci. Part C., 10, 1 (1974)
  95. Hunten O, Maass KW, J. Am. Chem. Soc., 51, 153 (1929)
  96. Chumpitaz LDA, Coutinho LF, Meirelles AJA, J. Am. Oil Chem. Soc., 76, 379 (1999)
  97. Reid BE, Prausnitz RC, Poling JM, The properties of gases and liquids, McGraw Hill Book Co., New York, 1987.
  98. Lunkenheimer K, Barzyk W, Hirte R, Rudert R, Langmuir, 19(15), 6140 (2003)
  99. Brydson JA, Rubber chemistry, Applied Science Publishers, 1978.
  100. Kruger FWH, McGill WJ, J. Appl. Polym. Sci., 42, 2643 (1991)
  101. Thomas SP, Thomas S, Mathew EJ, Marykutty CV, Polym. Compos., 35, 956 (2014)
  102. Cheremisinoff NP, Elastomer technology handbook, CRC Press, 1993.
  103. Sahoo NG, Das CK, Panda AB, Pramanik P, Macromol. Res., 10(6), 369 (2002)
  104. Adams HE, Johnson BL, Cross linking in natural rubber vulcanizates, (1953).
  105. Claude M, Blow, institution of the rubber industry, rubber technology and manufacture, butterworths for the institution of the rubber industry, (1971).
  106. Seymour RD, Raymond Benedict Deanin, History of polymeric composites, VNU Science Press, Utrecht, NL, 1987.
  107. Pal R, Rheology of particulate dispersions and composites, CRC Press, Boca Raton, Fl, 2006.
  108. Leong YW, Abu Bakar MB, Ishak ZAM, Ariffin A, Pukanszky B, J. Appl. Polym. Sci., 91(5), 3315 (2004)
  109. Balberg I, Carbon N.Y., 40, 139 (2002)
  110. Scharfe B, Lehmann S, Gerdes T, Bruggemann D, J. Compos. Sci., 3, 101 (2019)
  111. Kim S, J. Polym. Sci. B: Polym. Phys., 41(9), 936 (2003)
  112. Tarrio-Saavedra J, Lopez-Beceiro J, Naya S, Artiaga R, Polym. Degrad. Stabil., 93, 2133 (2008)
  113. Ahmad A, Abbas Z, Obaiys S, Abdalhadi D, Polymers, 9, 12 (2017)
  114. DeArmitt C, Functional Fillers for Plastics, in: Appl. Plast. Eng. Handb., Elsevier Inc., Amsterdam, pp.455 2011.
  115. La Mantia FP, Morreale M, Compos. Pt. A-Appl. Sci. Manuf., 42, 579 (2011)
  116. Liang JZ, Compos. Part B Eng., 51, 224 (2013)
  117. Cassagnau P, Polymer, 5, 4762 (2013)
  118. Ng HY, Lu X, Lau SK, Polym. Compos., 26, 778 (2005)
  119. Xue Q, Eur. Polym. J., 40, 323 (2004)
  120. Fu SY, Feng XQ, Lauke B, Mai YW, Compos. Part B Eng., 39, 933 (2008)
  121. Fu S, Sun Z, Huang P, Li Y, Hu N, Nano Mater. Sci., 1, 2 (2019)
  122. Antunes PV, Ramalho A, Carrilho EVP, Mater. Des., 61, 50 (2014)
  123. Ashraf MA, Peng W, Zare Y, Rhee KY, Nanoscale Res. Lett., 13, 1 (2018)
  124. La Mantia FP, Morreale M, Scaffaro R, Tulone S, J. Appl. Polym. Sci., 127(4), 2544 (2013)
  125. Rueda MM, Auscher MC, Fulchiron R, Perie T, Martin G, Sonntag P, Cassagnau P, Prog. Polym. Sci, 66, 22 (2017)
  126. Moczo J, Pukanszky B, J. Ind. Eng. Chem., 14(5), 535 (2008)
  127. Selvin TP, Kuruvilla J, Sabu T, Mater. Lett., 58, 281 (2004)
  128. Patti A, Russo P, Acierno D, Acierno S, Compos. Part B Eng., 94, 350 (2016)
  129. Kim BC, Park SW, Lee DG, Compos. Struct., 86, 69 (2008)
  130. Vlasveld DPN, de Jong M, Bersee HEN, Gotsis AD, Picken SJ, Polymer, 46(23), 10279 (2005)
  131. Cassagnau P, Polymer, 49(9), 2183 (2008)
  132. Scarfato P, Incarnato L, Di Maio L, Dittrich B, Schartel B, Compos. Part B Eng., 98, 444 (2016)
  133. Patti A, Barretta R, de Sciarra FM, Mensitieri G, Menna C, Russo P, Compos. Struct., 131, 282 (2015)
  134. Pullicino E, Zou W, Gresil M, Soutis C, Appl. Compos. Mater., 24, 301 (2017)
  135. Boyle JF, Manas-Zloczower I, Feke DL, Powder Technol., 153(2), 127 (2005)
  136. Mukhopadhyay P, Gupta RK, Graphite, graphene, and their polymer nanocomposites, (2012).
  137. Ebnesajjad S, Lanck AH, Adhesives technology handbook, 3rd ed., William Andrew, Norwich, NY, 2014.
  138. Larson R, The structure and rheology of complex fluids, Oxford university press, New York, 1999.
  139. Pishvaei M, Graillat C, Cassagnau P, McKenna TF, Chem. Eng. Sci., 61(17), 5768 (2006)
  140. Lewis TB, Nielsen LE, Trans. Soc. Rheol., 12, 421 (1968)
  141. Bigg DM, Polym. Eng. Sci., 23, 206 (1983)
  142. Murakami S, Ri K, Itoh T, Izu N, Shin W, Inukai K, Takahashi Y, Ando Y, Ceram. Int., 38, 1591 (2012)
  143. Tadmor Z, Gogos CG, Principles of polymer processing, (2006).
  144. Poslinski AJ, Ryan ME, Gupta RK, Seshadri SG, Frechette FJ, J. Rheol., 32, 703 (1988)
  145. Liu DM, Tseng WJ, Mater. Sci. Eng. A-Struct. Mater. Prop. Microstruct. Process., 254, 136 (1998)
  146. Auscher MC, Fulchiron R, Perie T, Cassagnau P, Polymer, 132, 174 (2017)
  147. Megias-Alguacil D, Duran JDG, Delgado AV, J. Colloid Interface Sci., 231(1), 74 (2000)
  148. Coussot P, Malkin AY, Ovarlez G, Rheol. Acta, 56(3), 161 (2017)
  149. Casson N, Pergamon press, Rheol. Dispersed Syst., Pergamon press, Oxford, pp.84 1959,.
  150. Tseng WJ, Liu DM, Hsu CK, Ceram. Int., 25, 191 (1999)
  151. Herschel WH, Bulkley R, Proc ASTM Part II., 26, 621 (1926)
  152. Subbanna M, Pradip, Malghan SG, Chem. Eng. Sci., 53(17), 3073 (1998)
  153. Hornsby PR, Springer, Berlin, Heidelberg, pp.155 1999.
  154. Bonn D, Denn MM, Berthier L, Divoux T, Manneville S, Rev. Mod. Phys., 89 (2017)
  155. Tseng WJ, Teng KH, J. Mater. Sci., 36(1), 173 (2001)
  156. Cetinel FA, Bauer W, Muller M, Knitter R, Haubelt J, J. European Ceram. Soc., 30, 1391 (2010)
  157. Rueda MM, Fulchiron R, Martin G, Cassagnau P, Rheol. Acta, 56(7-8), 635 (2017)
  158. Rueda M, Fulchiron R, Cassagnau P, Prebe A, Martin G, J. Rheol., 60(6), 1245 (2016)
  159. Chapman FM, Lee TS, SPE J., 26, 37 (1970)
  160. Kataoka T, Kitano T, Oyanagi Y, Sasahara M, Rheol. Acta, 18, 635 (1979)
  161. Suetsugu Y, White JL, J. Appl. Polym. Sci., 28, 1481 (1983)
  162. Bomal Y, Godard P, Polym. Eng. Sci., 36(2), 237 (1996)
  163. Wang Y, Wang JJ, Polym. Eng. Sci., 39(1), 190 (1999)
  164. Osman MA, Atallah A, Schweizer T, Ottinger HC, J. Rheol., 48(5), 1167 (2004)
  165. Kim KJ, White JL, Shim SE, Choe S, J. Appl. Polym. Sci., 93(5), 2105 (2004)
  166. Zoukrami F, Haddaoui N, Bailly C, Sclavons M, Legras R, J. Appl. Polym. Sci., 123(1), 257 (2012)
  167. Dangtungee R, Yun J, Supaphol P, Polym. Test, 24, 2 (2005)
  168. Barczewski M, Lewandowski K, Schmidt M, Szostak M, Ploym. Eng. Sci., 57, 998 (2017)
  169. Dangtungee R, Supaphol P, Polym. Test, 27, 951 (2008)
  170. Thomas-Vielma P, Cervera A, Levenfeld B, Varez A, J. European Ceram. Soc., 28, 763 (2008)
  171. Liu W, Xie Z, Bo T, Yang X, J. European Ceram. Soc., 31, 1611 (2011)
  172. Kong X, Barriere T, Gelin JC, J. Mater. Process. Technol., 212, 2173 (2012)
  173. Ozgun O, Gulsoy HO, Yilmaz R, Findik F, J. Alloy. Compd., 576, 140 (2013)
  174. Sahli M, Gelin JC, Int. J. Adv. Manuf. Technol., 69, 2139 (2013)
  175. Fan JL, Han Y, Liu T, Cheng HC, Gao Y, Tian JM, Trans. Nonferrous Met. Soc. China, 23, 1709 (2013)
  176. Allaire F, Marple BR, Boulanger J, Ceram. Int., 20, 319 (1994)
  177. Royer A, Barriere T, Gelin JC, Metals, 6, 89 (2016)
  178. Subasi M, Safarian A, Karatas C, Powder Metall., 62, 229 (2019)
  179. Moloney VMB, Parris D, Edirisinghe MJ, J. Am. Ceram. Soc., 78, 3225 (1995)
  180. Bergstrm L, Shinozaki K, Tomiyama H, Mizutani N, J. Am. Ceram. Soc., 80, 291 (1997)
  181. Hatzikiriakos SG, Kazatchkov IB, Vlassopoulos D, J. Rheol., 41(6), 1299 (1997)
  182. Fisch M, Bacaloglu R, J. Vinyl Addit. Technol., 4, 4 (1998)
  183. Vanga-Bouanga C, Heid TF, Frechette MF, David E, Institute of Electrical and Electronics Engineers Inc., 709 (2015).
  184. Yi Z, Yang J, Liu X, Mao L, Cui L, Liu Y, J. Appl. Polym. Sci., 137, 48621 (2020)
  185. Benabid FZ, Mallem OK, Zouai F, Cagiao ME, Benachour D, South Afr. J. Chem., 71, 150 (2018)
  186. Nguyen DM, Vu TN, Nguyen TML, Nguyen TD, Thuc CNH, Bui QB, Colin J, Perre P, Materials, 13, 1461 (2020)
  187. Xiong C, Zhou Z, Xu W, Hu H, Zhang Y, Dong L, Carbon N. Y., 43, 1788 (2005)
  188. Iqbal M, Mamoor G, Bashir T, Irfan M, Manzoor M, J. Chem. Eng., 25, 61 (2010)
  189. Kim GM, Michler GH, Polymer, 39(23), 5699 (1998)
  190. Zuiderduin WCJ, Westzaan C, Huetink J, Gaymans RJ, Polymer, 44, 261 (2002)
  191. Lazzeri A, Zebarjad SM, Pracella M, Cavalier K, Rosa R, Polymer, 46(3), 827 (2005)
  192. Bartczak Z, Argon AS, Cohen RE, Weinberg M, Polymer, 40(9), 2347 (1999)
  193. Thio YS, Argon AS, Cohen RE, Weinberg M, Polymer, 43(13), 3661 (2002)
  194. Osman MA, Suter UW, Chem. Mater., 14, 4408 (2002)
  195. Hornsby PR, Watson CL, J. Mater. Sci., 30(21), 5347 (1995)
  196. Ke F, Jiang X, Xu H, Ji J, Su Y, Compos. Sci. Technol., 72, 574 (2012)
  197. Ding HJ, Tang S, Jiang LY, Ma BL, Tang CY, eXPRESS Polym. Lett., 14, 741 (2020)
  198. Martins AB, Santana RMC, Mater. Res. Express., 6, 095336 (2019)
  199. Martins AB, Santana RMC, Carbohydr. Polym., 135, 79 (2016)
  200. Raj RG, Kokta BV, Polym. Eng. Sci., 31, 1358 (1991)
  201. Rao KH, Forssberg KSE, Forsling W, Colloids Surf. A: Physicochem. Eng. Asp., 133, 107 (1998)
  202. Zafeiropoulos NE, Baillie CA, Hodgkinson JM, Compos. Pt. A-Appl. Sci. Manuf., 33, 1185 (2002)
  203. Kim H, Biswas J, Choe S, Polymer, 47(11), 3981 (2006)
  204. Kaully T, Siegmann A, Shacham D, Polym. Compos., 29, 396 (2008)
  205. Deshmukh GS, Pathak SU, Peshwe DR, Ekhe JD, Bull. Mater. Sci., 33, 277 (2010)
  206. Gonzalez L, Lafleur P, Lozano T, Morales AB, Garcia R, Angeles M, Rodriguez F, Sanchez S, Polym. Compos., 35, 1 (2014)
  207. Chartarrayawadee W, Molloy R, Ratchawet A, Janmee N, Butsamran M, Panpai K, Polym. Compos., 38, 2272 (2017)
  208. Ma F, Chen S, Liu P, Geng F, Li W, Liu X, He D, Pan D, Mater. Sci. Eng. C-Biomimetic Supramol. Syst., 62, 407 (2016)
  209. Mallakpour S, Motirasoul F, Ultrason. Sonochem., 37, 623 (2017)
  210. Djagarova E, Zheleva D, Tipova N, Stearic Acid Synth. Prop. Appl., Nova Science Publishers, Inc., New York, pp.134 2015.
  211. Rooj S, Das A, Stockelhuber KW, Mukhopadhyay N, Bhattacharyya AR, Jehnichen D, Heinrich G, Appl. Clay Sci., 67, 50 (2012)
  212. Zoromba MS, Bassyouni M, Abdel-Hamid SMS, Rubber Chem. Technol., 88, 449 (2015)
  213. Zhou Y, Wang S, Zhang Y, Zhang Y, Polym. Polym. Compos., 14, 527 (2006)
  214. Mohanty TR, Bhandari V, Chandra AK, Chattopadhyay PK, Chattopadhyay S, Polym. Compos., 34, 214 (2013)
  215. Jong L, J. Elastomers Plast., 46, 413 (2014)
  216. Gu Z, Zhang X, Bao C, Fang F, Ding X, Li S, Chen L, Xue M, Wang H, Tian X, J. Non-Cryst. Solids, 388, 17 (2014)
  217. Loh NH, Tor SB, Khor KA, J. Mater. Process. Technol., 108, 398 (2001)
  218. Dehghan-Manshadi A, Yu P, Dargusch M, StJohn D, Qian M, Powder Technol., 364, 189 (2020)
  219. Supati R, Loh NH, Khor KA, Tor SB, Mater. Lett., 46, 109 (2000)
  220. Hausnerova B, Rev. Artic., 2017, 761 (2017)
  221. Lin SIE, Ceram. Int., 27, 205 (2001)
  222. Jardiel T, Sotomayor ME, Levenfeld B, Varez A, Int. J. Appl. Ceram. Technol., 5, 574 (2008)
  223. Hanemann T, Heldele R, Mueller T, Hausselt J, Int. J. Appl. Ceram. Technol., 8, 865 (2011)
  224. Ahn S, Park SJ, Atre S, Int. J. Powder Metall., 48 (2011)
  225. Ipek N, Mutlu I, Mater. Technol., 1, 2020.
  226. Xu P, Pyczak F, Yan M, Limberg W, Willumeit-Romer R, Ebel T, Appl. Mater. Today., 19, 100630 (2020)
  227. Liu JJ, Ren B, Wang YL, Lu YJ, Wang L, Chen YG, Yang JL, Huang Y, Chem. Eng. J., 362, 504 (2019)
  228. Nait-Ali B, Haberko K, Vesteghem H, Absi J, Smith DS, J. European Ceram. Soc., 26, 3567 (2006)
  229. Hu L, Zhang Y, Zhang S, Zhou Y, Mater. Lett., 82, 152 (2012)
  230. Zhang HL, Li JF, Zhang BP, Acta Mater., 55, 171 (2007)
  231. Long NN, Bi JQ, Wang WL, Du M, Bai YJ, Ceram. Int., 38, 2381 (2012)
  232. Li Q, Xuan Y, Exp. Therm. Fluid Sci., 33, 591 (2009)
  233. Borin DY, Korolev VV, Ramazanova AG, Odenbach S, Balmasova OV, Yashkova VI, Korolev DV, J. Magn. Magn. Mater., 416, 110 (2016)
  234. Dadwal A, Joy PA, Colloids Surf. A: Physicochem. Eng. Asp., 555, 525 (2018)
  235. Cavicchi KA, Macromol. Symp., 358, 194 (2015)
  236. Brostowitz NR, Weiss RA, Cavicchi KA, ACS Macro Lett., 3, 374 (2014)
  237. Pantoja M, Lin ZW, Cakmak M, Cavicchi KA, J. Polym. Sci. B: Polym. Phys., 56(8), 673 (2018)
  238. Zhang l, Brostowitz NR, Cavicchi KA, Weiss RA, Macromol. React. Eng., 8, 81 (2014)
  239. Antony P, De SK, Polymer, 40(6), 1487 (1999)
  240. Qiao XY, Wang XY, Wang C, Weiss RA, J. Rheol., 62(4), 821 (2018)
  241. Pielichowska K, Pielichowski K, Prog. Mater. Sci., 65, 67 (2014)
  242. Hong Y, Yan W, Du J, Li W, Xu T, Ye WB, J. Therm. Anal. Calorim. (2020).
  243. Marwah A, Marwah P, J. Appl. Nat. Sci., 119 (2020).
  244. Subhash VG, Kumar GRK, Sapre A, Dasgupta S, AIJR Prepr, 1 (2020).
  245. Pradhan D, Biswasroy P, Kumar naik P, Ghosh G, Rath G, Arch. Med. Res. (2020).