THE APPLICATION OF DENDRITIC MATERIAL IN TEXTILE ENGINEERING

Authors

  • Somaye Akbari Department of Textile Engineering, Amirkabir University of Technology (Polytechnic Tehran), Tehran, Iran

Abstract

During the last decade, dendritic polymers including random hyperbranched polymers, dendrigrafts, dendrons and dendrimers characterized by a highly branched structure of great regularity, a compact shape, a large number of reactive end groups, and room between the branches for taking up guest molecules have attracted considerable attention. A remarkable variety of applications for dendritic polymers has been investigated as enabling building blocks for nanotechnology. A new promising area of potential applications for dendritic polymers is the field of textiles engineering.
Therefore, this review intends to introduce a brief description of the synthesis and characteristic of dendritic polymers and new potential applications of dendritic polymers in textiles engineering. With regard to the price of dendritic polymers, the application of dendritic polymer, particularly hyperbranched polymer, will be new approach to create novel features in the field of textiles engineering.

References

Hongu T, Phillips GO, “New Fibersâ€, Ellis Horwood, London, 1990.

Newkome RG, Moorefield CN, Voegtle F, “Dendrimers and Dendronsâ€, Wiley-VCH, Weinheim, 2001.

Ariga K, Kunitake T, “Supramolecular Chemistry –Fundamentals and Applicationsâ€, Springer-Verlag Berlin Heidelberg 2006.

Tomalia DA, Frechet JMJ , J. Polym. Sci: Polym. Chem., 2002: 40, 2719-2728.

Yin RD, Qin D, Tomalia DA, Latallo JK, Baker JR, Polym. Mater. Sci. Engin., 1997, 77(1): 206-207.

Tomalia DA, Materi. today, 2005: 34-46.

Vogtle F, Gestermann S, Hesse R, Schwierz H, Windisch B, Prog. Polym. Sci. 2000, 25(7), 987-1041.

Tomalia DA, Majoros I., J. Macromol. Sci. 2003, C43(3): 411-477.

Mekelburger H-B, Jaworek W, Vogtle F, Angew. Chem Int. Ed. Engl. 1992, 31( 12), 1571-1576.

Frechet JMJ, Tomalia DA, “Dendrimers and Other Dendritic Polymerâ€, John-Wiley, Chichester, 2001.

Tomalia DA, Prog Polym Sci, 2005, 30: 294-324.

Flory PJ, J. Am. Chem. Soc., 1952, 74: 2718-2723.

Voit B, J. Polym. Sci.: Polym. Chem., 2000, 38, 2505–2525.

Kim YH, Webster OW, J. Am. Chem. Soc., 1990, 112, 4592-4593.

Tomalia DA, Hedstrand DM, Ferritto MS., Macromolecules 1991, 24: 1435–1438.

Gauthier M, Möller M, Macromolecules, 1991, 24:4548–4553.

Teertstra SJ, Gauthier M, Prog. Polym. Sci., 2004, 29, 277–327.

Njikang GN, Gauthier M, Li J, Polymer, 49, 5474–5481,2008.

Hawker CJ, Frechet JMJ, Macromolecules, 1990, 23, 4726-4729.

Tomalia DA, Baker H, Dewald J, Hall M, Kallos G, Martin S, Roeck J, Ryder J, Smith PA, Polym. J (Tokyo), 1985, 17:117-132.

http://dnanotech.com

Vögtle F, Richardt G, Werner N, “Dendrimer Chemistryâ€, Wiley-VCH, Weinheim, 2009.

Newkome GR, “Advances in Dendritic Macromoleculesâ€, JAl PRESS LTD, London, 1996.

Tomalia DA, Naylor AM, Goddard WA, Ange. Chemie Inter. Edition in English, 1990, 29 (2): 138–175.

Fréchet JMJ, Science, 1994, 263 (5154): 1710-1715.

Hawker C, Fréchet JMJ, J. Chem. Soc., Chem. Commun., 1990, 15: 1010-1013.

Frauenrath H, Prog. Polym. Sci., 2005, 30: 325–384.

Caminade A-M, Laurent R, Majoral J-P, Adv. Drug Del. Rev., 2005, 57: 2130– 2146

Duncan R, Izzo L, Adv. Drug Del. Rev. 2005, 57: 2215– 2237.

Jain K, Kesharwani P, Gupta U, Jain NK, Int. J. Pharm., 2010, 394, 122–142.

Hawker CJ, Wooley KL, Fréchet JMJ, Chem. Aust., 1992, 59(12), 620-622.

Yates CR, Hayes W, Euro. Polym. .J, 2004, 40, 1257-1281.

Voit B, J. Polym. Sci. Part A: Polym. Chem., 2000, 38, 2505-2525.

Gauthier M, Li W, Tichagwa L, Polymer 1997, 38(26), 6363-70.

Santini CMB, Hatton TA, Hammond PT, Langmuir, 2006, 22, 7487-7498.

Iyer J, Fleming K, Hammond PT, Macromolecules, 1998, 31, 8757-8765.

Maiti PK, Cagin T, Wang G, Goddard WA, Macromolecules, 2004, 37: 6236-6254.

Lescanec RL, Muthukumar M, Macromolecules, 1990, 22, 2280-2288.

de Gennes PG, Hervet H, J. Physique Letters , 1983, 44, 351-360.

Akbari S, Kish MH, Entezami AA, Polym. Int. 2010, 59, 1550–1557.

Akbari S, Kish MH, Entezami AA, Iran polym. J., 2011, 20(7):539-549.

Bosman AW, Janssen HM, Meijer EW, Chem. Rev., 1999, 99(7) 1665-1688.

Maciejewski M, J. Macromol. Sci. Chem. A, 1982, 17: 689-703.

Maiti PK, Cagin T, Lin S-T, Goddard WA, Macromolecules, 2005, 38: 979-991.

Wang D, Imae T, J. AM. CHEM. SOC., 2004, 126, 13204-13205.

Gupta U, Agashe H, Jain NK, J. Pharm. Sci., 2007, 10(3) , 358-367.

Van Hest JCM, Baars MWPL, Elissen-Romhn C, Van Genderen MHP, Meijer EW, Macromolecules, 1995,28, 6689-6691.

Majoros IJ, Baker JR, “Dendrimer-Based Nanomedicineâ€, Pan Stanford Publishing, Singapore, 2008.

Boas U, Christensen JB, Heegaard PMH, “Dendrimers in Medicine and Biotechnologyâ€, New Molecular Tools, Royal Society of Chemistry, Cambridge 2006.

Yamada T, Ge M, Shinohara H, Kimura K, Mashiko S, Chem. Phys. Let., 2003, 379 : 458–465.

Crooks RM, Lemon III, Sun L, Yeung LK, Zhao M, “Dendrimer-Encapsulated Metals and Semiconductors: Synthesis, Characterization, and Applicationsâ€, Springer-Verlag:, Berlin-Heidelberg, 2001.

Bharti JP, Prajapati SK, Jaiswal MK, Yadav RD, Inter. J. Pharm. Sci. Res., 2011, 2(8): 1947-1960.

Ashvini S, Asheesh S, Dharmendra C, Ritu N, Inter. J. Pharm. Sci. Res., 2012, 2(1): 44-52.

Svenson S, Tomalia DA, Adv. Drug Deliv. Rev, 2005, 57: 2106-2129.

Bieniarz C, Marcel Dekker, 1998, 18:55.

Svenson S, Tomalia DA, Adv. Drug Del. Rev., 2005, 57: 2106– 212.

Ong KK, Jenkins AL, Cheng R, Tomalia DA, Durst HD, Jensen JL, Emanuel PA, Swima CR, Yin R, Analytica. Chimica. Acta., 2001 444: 143–148.

Miller LL, Duan RG, Tully DC, Tomalia DA, J. Am. Chem. Soc., 1997, 119: 1005-1010.

Zeng F, Zimmerman SC, Chem. Rev. 1997, 97: 1681-1712.

Al-Jamal KT, Ramaswamy C, Florence AT, Adv. Drug Del. Rev. ,2005, 57: 2238– 2270.

M´ery D, Astruc D, Coordination Chem. Rev., 2006, 250(15–16): 1965–1979.

Gade LH, “Topics in Organometallic Chemistry: Dendrimer Catalysisâ€, Springer-Verlag, Berlin Heidelberg, 2006.

Nwe K , Bryant LH , Brechbiel MW, Bioconjugate Chem., 2010, 21 (6):1014–1017.

Kobayashi H, Brechbiel MW, Adv. Drug Deliv. Rev., 2005, 57: 2271– 2286.

Flomenboma O, Amirb RJ, Shabatb D, Klafter J, J Lum. 2005, 111: 315–325.

Irfan M, Seiler M, Ind. Eng. Chem. Res. 2010, 49, 1169–1196.

http://www.prnewswire.com

Froehling PE, Dyes and Pigments, 2001,48,: 187–195.

Jansen JFGH, Meijer EW, Macromol Symp, 102, 27-33,1996.

Adronov A, Gilat SL, Frechet JMJ, Ohta K, Neuwahl FVR, Fleming GR, J. Am. Chem. Soc., 2000, 122: 1175-1185.

Burkinshaw SM, Froehling PE, Mignanelli M, Dyes and Pigments, 2002,53,: 229–235.

Khatibzadeh M, Bozorgi SMM, Moradian S, J Color Sci. Tech. , 2010, 4(1) ,25 - 32 .

Khatibzadeh M, Bozorgi SMM, Moradian S, Color. Tech. 2010, 126 (5), 269 – 274.

Ahani M, Khatibzadeh M, Bozorgi SMM, J. Ind. En. Chem. , In Press

Khatibzadeh M, Bozorgi SMM, Moradian S, J. Fib. Bio. Inform. , 2012, 5(4) 455 -461.

Ahani M, Khatibzadeh M, Bozorgi SMM, Prog. Color. Color. Coat., 2012, 2(5) , 117- 124

Singha K, Maity S, Singha M, Inter. J. Text. Sci., 2012, 1(6): 69-77.

Burkinshaw SM, Mignanelli M, Froehling PE, Bride MJ , Dyes Pigments , 2000, 47,259–267.

Khakzar Bafrooei F, Malek RMA, Mazaheri FM, J Color Sci. Tech., 2012, 6 (1) , 59- 65

Zhang F, Chen Y, Lina H, Lu Y, Color. Technol., 2007, 123, 351–357.

Jockusch S , Turro NJ, Tomalia DA, Macromolecules, 1995,28: 7416-7418.

Karukstis KK, Perelman LA, Wong WK, Langmuir, 2002, 18: 10363–10371.

Savage N, Diallo MS, J. Nanoparticle Res., 2005, 7: 331–342.

Diallo MS. , Christie S , Swaminathan P , Johnson JH, Goddard WA, Environ. Sci. Technol., 2005, 39: 1366-1377.

Hayati B, Mahmoodi N M, Arami M, Mazaheri F, Clean – Soil, Air, Water, 2011, 39 (7): 673–679.

Arkas M, Tsiourvas D, Paleos CM, Macromol. Mater. Eng., 2010, 295: 883–898.

Xu X-X, Zhou C-L, Zeng B-R, Xia H-P, Lan W-G, He X-M, Sep. Purif. Tech., 2012, 96: 229–236.

Jingjing H, Yiyun C, Qinglin W, Libo Z, Tongwen X, J. Phys. Chem. B, 113, 10650–10659, 2009.

Jansen JFGA, EMM de Brabander-van den Berg, Meijer EW, 1994, 266:1226-1229.

Aulenta F, Hayes W, Rannard S, Eur Polym J, 39, 1741-1771, 2003.

Namazi H, Bahrami S, Entezami AA, Iran. Polym. J., 2005, 14, 921-927.

Seiler M, Fluid. Phase. Equilibria., 2006, 241, 155-174.

Akbari S, Kish MH, Mazaheri FM, Int. text. cloth. des. conf., 2012, 25-30.

Zhang F, Chen YY, Lin H, Zhang DS, Fib. Polym., 2008, 9(5), 515-520.

Ghosh S, Yadav S, Vasanthan N, Sekosan G, J. Appl. Polym. Sci., 2010, 115: 716–722.

Zhang F, Zhang D, Chen Y, Lin H, Cellulose, 2009, 16,281–288.

Abkenar SS , Malek RMA, Cellulose , 2012, 19 (5) , 1701 -1714.

Abkenar SS , Malek RMA, Taheri S, ,J. Facul. Med., 2012 , 36 (1) , 11 -18.

Ghosh S, Yadav S, Vasanthan N, Sekosan G, J. Appl. Polym. Sci., 2010, 115: 716–722.

Colleoni C, Massafra MR, Migani V, Rosace G, J. Appl. Polym. Sci. 2011, 120: 2122–2129.

Klaykruayat B, Siralertmukul K, Carbo. Polym., 2010, 80, 197-207.

Bashar MM, Khan MA, J. Polym. Environ., 2013, 21(1): 181-190.

Akbari S, Kish MH, Entezami AA, Polym. Int., 2008,57, 846-853.

Barzegar RR, Akbari S, Kish MH, Polym. Int., 2013, Under Press

Downloads

Published

2013-10-31