화학공학소재연구정보센터
Journal of Industrial and Engineering Chemistry, Vol.84, 96-105, April, 2020
Preparation of eco-friendly alginate-based Pickering stabilizers using a dual ultrasonic nebulizer spray method
E-mail:
Pickering emulsions based on biologically oriented compounds are highly appreciated in a variety of applications, such as food, cosmetics, and pharmaceuticals. Here, we develop the dual ultrasonic nebulizer spray method to efficiently produce alginate particles (APs) that can be used as eco-friendly and biocompatible Pickering stabilizers. This custom-designed method enables one-step preparation of chitosan-coated APs (CAPs) and direct encapsulation of magnetic nanoparticles within CAPs. The size of the resulting CAPs is about 5?μm in diameter, which is ideal for emulsion stabilizers. Unlike conventional APs production based on nozzle spraying, the developed method does not cause clogging problems, allowing large-scale production of APs-based Pickering stabilizers with a narrow size distribution. In addition, various CAPs-stabilized Pickering emulsions are demonstrated to be extremely stable against coalescence and drying upon exposure to air.
  1. Aveyard R, Binks BP, Clint JP, Adv. Colloid Interface Sci., 100-102, 503 (2003)
  2. Ramsden W, Proc. Roy. Soc., 72, 156 (1903)
  3. Pickering SU, J. Chem. Soc., 91, 2001 (1907)
  4. Wu J, Ma GH, Small, 12(34), 4633 (2016)
  5. Frelichowska J, Bolzinger MA, Pelletier J, Valour JP, Chevalier Y, Int. J. Pharm., 371(1-2), 56 (2009)
  6. Berton-Carabin CC, Schroen K, Annu. Rev. Food Sci. Technol., 6(1), 263 (2015)
  7. Patravale VB, Mandawgade SD, Int. J. Cosmet. Sci., 30(1), 19 (2008)
  8. Haase MF, Grigoriev DO, Mohwald H, Shchukin DG, Adv. Mater. (Deerf. Beach, Fla.) D, 2429 (2012).
  9. Yang H, Zhou T, Zhang W, Angew. Chem.-Int. Edit., 52(29), 7455 (2013)
  10. Dudchenko AV, Rolf J, Shi L, Olivas L, Duan W, Jassby D, ACS Nano, 9(10), 9930 (2015)
  11. Kumar N, Gaur T, Mandal A, J. Ind. Eng. Chem., 54, 304 (2017)
  12. Sheibat-Othman N, Bourgeat-Lami E, Langmuir, 25(17), 10121 (2009)
  13. Song XM, Zhao YL, Wang HT, Do QG, Langmuir, 25(8), 4443 (2009)
  14. Chen JH, Cheng C, Chiu W, Lee C, Liang N, Eur. Polym. J., 44(10), 3271 (2008)
  15. Teixeira RFA, McKenzie HS, Boyd AA, Bon SAF, Macromolecules, 44(18), 7415 (2011)
  16. Daradmare S, Pradhan M, Raja VS, Parida S, Polymer, 118, 116 (2017)
  17. Min TH, Choi HJ, Macromol. Res., 25(6), 565 (2017)
  18. Lan Q, Liu C, Yang F, Liu SY, Xu J, Sun DJ, J. Colloid Interface Sci., 310(1), 260 (2007)
  19. Cui ZG, Cui CF, Zhu Y, Binks BP, Langmuir, 28(1), 314 (2012)
  20. De Folter JWJ, Van Ruijven MWM, Velikov KP, Soft Matter, 8(25), 6807 (2012)
  21. Wang LJ, Hu YQ, Yin SW, Yang XQ, Lai FR, Wang SQ, J. Agric. Food Chem., 63(9), 2514 (2015)
  22. Calabrese V, Courtenay JC, Edler KJ, Scott JL, Curr. Opin. Green Sustain. Chem., 12, 83 (2018)
  23. Benabid FZ, Zouai F, Alger. J. Nat. Prod., 4(3), 348 (2016)
  24. Liu Z, Jiao Y, Wang Y, Zhou C, Zhang Z, Adv. Drug Deliv. Rev., 60(15), 1650 (2008)
  25. Yang J, Han S, Zheng H, Dong H, Liu J, Carbohydr. Polym., 123, 53 (2015)
  26. Kraan S, Carbohydrates-comprehensive studies on glycobiology and glycotech-nology, InTech, Rijeka, Croatia, 2012.
  27. Hecht H, Srebnik S, Biomacromolecules, 17(6), 2160 (2016)
  28. You JO, Rafat M, Auguste DT, Langmuir, 27(18), 11282 (2011)
  29. Zhang W, Sun X, Fan X, Li M, He G, J. Dispers. Sci. Technol., 39(3), 367 (2018)
  30. Nan F, Wu J, Qi F, Liu Y, Ngai T, Ma G, Colloids Surf. A: Physicochem. Eng. Asp., 456, 246 (2014)
  31. Konwar A, Chowdhury D, RSC Adv., 5(77), 62864 (2015)
  32. Leong JY, Lam WH, Ho KW, Voo WP, Lee MFX, Lim HP, Lim SL, Tey BT, Poncelet D, Chan ES, Particuology, 24, 44 (2016)
  33. Paques JP, Van Der Linden E, Van Rijn CJM, Sagis LMC, Adv. Colloid Interface Sci., 209, 163 (2014)
  34. Ching SH, Bansal N, Bhandari B, Crit. Rev. Food Sci. Nutr., 57(6), 1133 (2017)
  35. Bugarski B, Li QL, Goosen MF, Poncelet D, Neufeld RJ, Vunjakg, AIChE J., 40(6), 1026 (1994)
  36. Pruße U, Bilancetti L, Bucko M, Bugarski B, Bukowski J, Gemeiner P, et al., Chem. Pap., 62, 364 (2008)
  37. Prusse U, Bruske F, Breford J, Vorlop KD, Chem. Eng. Technol., 21(2), 153 (1998)
  38. Tran VT, Benoit JP, Venier-Julienne MC, Int. J. Pharm., 407(1-2), 1 (2011)
  39. Burey P, Bhandari BR, Howes T, Gidley MJ, Crit. Rev. Food Sci. Nutr., 48(5), 361 (2008)
  40. Poncelet D, Lencki R, Beaulieu C, Halle JP, Neufeld RJ, Fournier A, Appl. Microbiol. Biotechnol., 38(1), 39 (1992)
  41. Sultana K, Godward G, Reynolds N, Arumugaswamy R, Peiris P, Kailasapathy K, Int. J. Food Microbiol., 62(1-2), 47 (2000)
  42. Liu K, Ding HJ, Liu J, Chen Y, Zhao XZ, Langmuir, 22(22), 9453 (2006)
  43. Hess DR, Respir. Care, 45(6), 609 (2000)
  44. Binks BP, Lumsdon SO, Langmuir, 17(15), 4540 (2001)
  45. Jin Y, Compaan A, Bhattacharjee T, Huang Y, Biofabrication., 8, 025016 (2016)
  46. McCallion ON, Taylor KM, Thomas M, Taylor AJ, Pharm. Res., 12, 1682 (1995)
  47. Zhang Y, Wei W, Lv P, Wang L, Ma G, Eur. J. Pharm. Biopharm., 77(1), 11 (2011)
  48. Liu H, Wang C, Zou S, Wei Z, Tong Z, Langmuir, 28(30), 11017 (2012)
  49. Chuah AM, Kuroiwa T, Kobayashi I, Nakajima M, Food Hydrocolloids, 23(3), 600 (2009)
  50. Xia M, Kang SM, Lee GW, Huh YS, Park BJ, J. Ind. Eng. Chem., 73, 306 (2019)
  51. Singh P, Singh SK, Bajpai L, Bajpai AK, Shrivastava RB, J. Mater. Res. Technol., 3(3), 195 (2014)
  52. Baysal K, Aroguz AZ, Adiguzel Z, Baysal BM, Int. J. Biol. Macromol., 59, 342 (2013)
  53. Sadiq A, Choubey A, Bajpai AK, J. Chil. Chem. Soc., 63(3), 4077 (2018)
  54. Istenic K, Balanc BD, Djordjevic VB, Bele M, Nedovic VA, Bugarski BM, Ulrih NP, J. Food Eng., 167, 196 (2015)
  55. Alkhatib MF, Mirghani MES, Qudsieh IY, Husain IAF, J. Appl. Sci., 10, 2705 (2010)
  56. Alshamsi HA, Hussein BS, Asian J. Chem., 30(2), 273 (2018)
  57. Shen H, Chen W, Li J, Li X, Yang H, Microchim. Acta, 157(1-2), 49 (2007)
  58. Gopalakannan V, Viswanathan N, Int. J. Biol. Macromol., 72, 862 (2015)
  59. Shu XZ, Zhu KJ, Int. J. Pharm., 201(1), 51 (2000)
  60. Philippova OE, Volkov EV, Sitnikova NL, Khokhlov AR, Desbrieres J, Rinaudo M, Biomacromolecules, 2(2), 483 (2001)
  61. Zhu AP, Yuan LH, Chen T, Wu H, Zhao F, Carbohydr. Polym., 69(2), 363 (2007)
  62. Tang K, Lv X, Wu S, Xuan S, Huang X, Bai C, ISIJ Int., 58(3), 379 (2018)
  63. Binks BP, Curr. Opin. Colloid Interface Sci., 7, 21 (2002)
  64. Adzmi F, Meon S, Musa MH, Yusuf NA, J. Microencapsul., 29(3), 205 (2012)
  65. Algothmi WM, Bandaru NM, Yu Y, Shapter JG, Ellis AV, J. Colloid Interface Sci., 397, 32 (2013)
  66. Shao ZJ, Huang XI, Yang F, Zhao WF, Zhou XZ Zhao CS, Carbohydr. Polym., 187, 85 (2018)
  67. de Oliveira EF, Paula HCB, Paula RCMD, Colloids Surf. B: Biointerfaces, 113, 146 (2014)
  68. Binks BP, Lumsdon SO, Langmuir, 16(23), 8622 (2000)
  69. Narukulla R, Ojha U, Sharma T, Colloids Surf. A: Physicochem. Eng. Asp., 568, 204 (2019)
  70. Sogias IA, Khutoryanskiy VV, Williams AC, Macromol. Chem. Phys., 211(4), 426 (2010)
  71. Narukulla R, Ojha U, Sharma T, Soft Matter, 13(36), 6118 (2017)
  72. Sharma T, Suresh Kumar G, Chon BH, Sangwai JS, Korea Aust. Rheol. J., 26(4), 377 (2014)
  73. Mladenovska K, Cruaud O, Richomme P, Belamie E, Raicki RS, Venier-Julienne MC, Popovski E, Benoit JP, Goracinova K, Int. J. Pharm., 345, 59 (2007)
  74. Bagheri L, Madadlou A, Yarmand M, Mousavi ME, Food Res. Int., 62, 1113 (2014)
  75. Dong YM, Ruan YH, Wang HW, Zhao YG, Bi DX, J. Appl. Polym. Sci., 93(4), 1553 (2004)
  76. Sakurai K, Maegawa T, Takahashi T, Polymer, 41(19), 7051 (2000)
  77. Sharma T, Kumar GS, Chon BH, Sangwai JS, J. Ind. Eng. Chem., 22, 324 (2015)
  78. Park BJ, Furst EM, Soft Matter, 7(17), 7676 (2011)
  79. Park NJ, Brugarolas T, Lee D, Soft Matter, 7(14), 6413 (2011)
  80. Hurd AJ, J. Phys. A. Math. Gen., 18(16), L1055 (1985)
  81. Park SJ, Lee D, Small, 11(35), 4560 (2015)
  82. Reynaert S, Moldenaers P, Vermant J, Langmuir, 22(11), 4936 (2006)
  83. Stamou D, Duschl C, Johannsmann D, Phys. Rev. E, 62(4B), 5263 (2000)
  84. Danov KD, Kralchevsky PA, Naydenov BN, Brenn G, J. Colloid Interface Sci., 287(1), 121 (2005)
  85. Kang DW, Choi KH, Lee SJ, Park BJ, J. Phys. Chem. Lett., 10(8), 1691 (2019)
  86. Lee M, Lee EY, Lee D, Park BJ, Soft Matter, 11(11), 2067 (2015)