J. Mater. Sci. Technol. ›› 2023, Vol. 140: 1-18.DOI: 10.1016/j.jmst.2022.07.053
• Review Article • Next Articles
Junping Ju, Jinzhu Yang, Wenchao Zhang, Yuting Wei, Hua Yuan, Yeqiang Tan*
Received:
2022-06-07
Revised:
2022-07-11
Accepted:
2022-07-13
Published:
2023-03-20
Online:
2023-03-06
Contact:
*E-mail address: Junping Ju, Jinzhu Yang, Wenchao Zhang, Yuting Wei, Hua Yuan, Yeqiang Tan. Seaweed polysaccharide fibers: Solution properties, processing and applications[J]. J. Mater. Sci. Technol., 2023, 140: 1-18.
[1] W. Khan, U.P. Rayirath, S. Subramanian, M.N. Jithesh, P. Rayorath, D. M. Hodges, A.T. Critchley, J.S. Craigie, J. Norrie, B. Prithiviraj, J. Plant Growth Regul. 28(2009) 386-399. [2] Q. Shi, A. Wang, Z. Lu, C. Qin, J. Hu, J. Yin, Carbohydr. Res.453-454(2017) 1-9. [3] L. Cunha, A. Grenha, Mar. Drugs 14 (2016) 41. [4] H. Yuan, S. Yang, H. Yan, J. Guo, W. Zhang, Q. Yu, X. Yin, Y. Tan, Small Methods 6 (2022) 2200129. [5] M. Janarthanan, M.S. Kumar, J. Ind. Text. 48(2018) 361-401. [6] H.P.S.Abdul Khalil, C.K. Saurabh, Y.Y. Tye, T.K. Lai, A.M. EasaaE Rosamah, M. R.N. Fazita, M.I. Syakir, A.S. Adnan, H.M. Fizree, N.A.S. Aprilia, A. Banerjee, Renew. Sust. Energy Rev. 77(2017) 353-362. [7] N. Arumugam, S. Chelliapan, H. Kamyab, S. Thirugnana, N. Othman, N.S. Nasri, Int. J. Env. Res. Public Health 15 (2018) 17. [8] M.M. Jayakody, M.P.G.Vanniarachchy, I. Wijesekara, J.Food Meas. Charact. 16(2022) 1195-1227. [9] X. Chen, X. Fu, L. Huang, J. Xu, X. Gao, Carbohydr. Polym. 265(2021) 118076. [10] K.Y. Lee, D.J. Mooney, Prog. Polym. Sci. 37(2012) 106-126. [11] L. Li, R. Ni, Y. Shao, S. Mao, Carbohydr. Polym. 103(2014) 1-11. [12] W. Lee, Y. Lim, A.T. Leow, P. Namasivayam, J.O. Abdullah, C. Ho, Carbohydr. Polym. 164(2017) 23-30. [13] Z. Han, X. Zhang, H. Yuan, Z. Li, G. Li, H. Zhang, Y. Tan, J. Power Sources 521 (2022) 230956. [14] R. Yegappan, V. Selvaprithiviraj, S. Amirthalingam, R. Jayakumar, Carbohydr. Polym. 198(2018) 385-400. [15] Y. Qin, Polym. Int. 57(2008) 171-180. [16] J.C. Sun, H.P. Tan, Materials 6 (2013) 1285-1309. [17] J. Han, L. Xiong, X. Jiang, X. Yuan, Y. Zhao, D. Yang, Prog. Polym. Sci. 91(2019) 1-28. [18] P. Sundarrajan, P. Eswaran, A. Marimuthu, L.B. Subhadra, P. Kannaiyan, Bull. Korean Chem. Soc. 33(2012) 3218-3224. [19] M. Bogun, G. Szparaga, P. Krol, T. Mikolajczyk, S. Rabiej, J. Appl. Polym. Sci. 131 (9) (2014) 40223. [20] J.H. Park, U.S. Shin, H.W. Kim, Bull. Korean Chem. Soc. 32(2011) 431-433. [21] G.K. Wasupalli, D. Verma, Int. J. Biol. Macromol. 114(2018) 10-17. [22] X. Huang, J. He, K. Sun, Y. Chen, Z. Zha, C. Zhou, Carbon 129 (2018) 258-269. [23] V.L. Campo, D.F. Kawano, D.B. da Silva, I.Carvalho, Carbohydr. Polym. 77(2009) 167-180. [24] S. Janaswamy, R. Chandrasekaran, Carbohydr. Res. 335(2001) 181-194. [25] R.P. Millane, R. Chandrasekaran, S. Arnott, I.C.M.Dea, Carbohydr. Res. 182(1988) 1-17. [26] E.R. Morris, D.A. Rees, G. Robinson, J. Mol. Biol. 138(1980) 349-362. [27] W.J. Chi, Y.K. Chang, S.K. Hong, Appl. Microbiol. Biotechnol. 94(2012) 917-930. [28] I.C. Dea, A.A. McKinnon, D.A. Rees, J. Mol. Biol. 68(1972) 153-172. [29] K.C. Labropoulos, D.E. Niesz, S.C. Danforth, P.G. Kevrekidis, Carbohydr. Polym. 50(2002) 407-415. [30] S. Arnott, A. Fulmer, W.E. Scott, I.C. Dea, R. Moorhouse, D.A. Rees, J. Mol. Biol. 90(1974) 269-284. [31] B. Dai, S. Matsukawa, Food Hydrocoll. 26(2012) 181-186. [32] M. Cao, X. Liu, J. Luan, X. Zhang, Carbohydr. Polym. 111(2014) 449-455. [33] K. Xia, X. Liu, J. Zhao, X. Zhang, Carbohydr. Polym. 110(2014) 32-37. [34] A.L. Ellis, T.B. Mills, I.T. Norton, A.B.Norton-Welch, Food Hydrocoll. 87(2019) 371-381. [35] I. Kaneda, Y. Sakurai, Food Hydrocoll. 61(2016) 148-154. [36] N. Russ, B.I. Zielbauer, K. Koynov, T.A. Vilgis, Biomacromolecules 14 (2013) 4116-4124. [37] S.N. Pawar, K.J. Edgar, Biomaterials 33 (2012) 3279-3305. [38] S.N. Pawar, K.J. Edgar, Biomacromolecules 12 (2011) 4095-4103. [39] F. van de Velde, S.H. Knutsen, A.I. Usov, H.S. Rollema, A.S. Cerezo, Trends Food Sci. Tech. 13(2002) 73. [40] H.J. Bixler, Brit. Food J. 96(1994) 12-17. [41] M. Dong, Z.X. Xue, L.L. Wang, Y.Z. Xia, Polymer 151 (2018) 334-339. [42] A.M.M.Sousa, H.K.S.Souza, J. Uknalis, S. Liu, M.P. Goncalves, L. Liu, Carbohydr. Polym. 115(2015) 348-355. [43] A.M.M.Sousa, H.K.S.Souza, J. Uknalis, S. Liu, M.P. Goncalves, L. Liu, Int. J. Biol. Macromol. 80(2015) 139-148. [44] S. Boral, H.B. Bohidar, J. Phys. Chem. B 116 (2012) 7113-7121. [45] J. Ma, Y. Lin, X. Chen, B. Zhao, J. Zhang, Food Hydrocoll. 38(2014) 119-128. [46] V. Florian-Algarin, A. Acevedo, J. Pham. Innov. 5(2010) 37-44. [47] D. Zhong, X. Huang, H. Yang, R. Cheng, Carbohydr. Polym. 81(2010) 948-952. [48] Q. Xiao, Q. Tong, L.-.T. Lim, Carbohydr.Polym. 87(2012) 1689-1695. [49] S. Liu, S. Huang, L. Li, J. Rheol. 60(2016) 203-214. [50] Z. Yang, H.J. Yang, H.S. Yang, Food Hydrocoll. 75(2018) 164-173. [51] M. Robal, T. Brenner, S. Matsukawa, H. Ogawa, K. Truus, B. Rudolph, R. Tu-vikene, Food Hydrocoll. 63(2017) 656-667. [52] S. Liu, L. Li, Food Hydrocoll. 61(2016) 793-800. [53] I.D. Rupenthal, C.R. Green, R.G. Alany, Int. J. Pharm. 411(2011) 69-77. [54] S. Liu, W.L. Chan, L. Li, Macromolecules 48 (2015) 7649-7657. [55] A.M.M.Sousa, J. Borges, A.Fernando Silva, M.P. Goncalves, Carbohydr. Polym. 96(2013) 163-171. [56] Z. Wang, K. Yang, H. Li, C. Yuan, X. Zhu, H. Huang, Y. Wang, L. Su, Y. Fang, Int. J. Biol. Macromol. 112(2018) 803-808. [57] N. Kometani, M. Tanabe, L. Su, K. Yang, K. Nishinari, J. Phys. Chem. B 119 (2015) 6 878-6 883. [58] L.Q. Cao, W. Lu, A. Mata, K. Nishinari, Y.P. Fang, Carbohydr. Polym. 242(2020) 116389. [59] S.H. Bjornoy, S. Mandaric, D.C. Bassett, A.K.O.Aslund, S. Ucar, J.P. Andreassen, B. L. Strand, P. Sikorski, Acta Biomater. 44(2016) 243-253. [60] J.W. Li, Y.D. Wu, J.M. He, Y.D. Huang, J. Mater. Sci. 51(2016) 5791-5801. [61] M. Nakauma, T. Funami, Y. Fang, K. Nishinari, K.I. Draget, G.O. Phillips, Food Hydrocoll. 55(2016) 65-76. [62] B.B. Crow, K.D. Nelson, Biopolymers 81 (2006) 419-427. [63] B.B. Lee, B.R. Bhandari, T. Howes, Chem. Eng. Sci. 183(2018) 1-12. [64] J.Y. Xiong, J. Narayanan, X.Y. Liu, T.K. Chong, S.B. Chen, T.S. Chung, J. Phys. Chem. B 109 (2005) 5638-5643. [65] H. Hecht, S. Srebnik, Biomacromolecules 17 (2016) 2160-2167. [66] A. Khavari, J.E. Lofroth, J. Bergenholtz, M. Nyden, Carbohydr. Polym. 137(2016) 4 80-4 87. [67] O. Catanzano, A. Soriente, A. La Gatta, M. Cammarota, G. Ricci, I. Fa-solino, C.Schiraldi, L. Ambrosio, M. Malinconico, P. Laurienzo, M.G. Raucci, G.G. d’Ayala, Carbohydr. Polym. 202(2018) 72-83. [68] F. Wang, X. Lu, X. Li, J. Hazard. Mater. 308(2016) 75-83. [69] S.L. Huang, M.Y. Lee, Y.S. Lin, Adv. Mater. Sci. Eng. 2017 (2018) 1763918. [70] L. Du, A. GhavamiNejad, Z.C. Yan, C.S. Biswas, F.J. Stadler, Carbohydr. Polym. 199(2018) 58-67. [71] J. Liu, Y. Liu, D. Miao, S. Sui, C. Zhang, P. Zhu, Fiber. Polym. 19(2018) 1605-1610. [72] M. Takemasa, A. Chiba, M. Date, Macromolecules 34 (2001) 7427-7434. [73] A. Leiter, A. Ludwig, V. Gaukel, J. Food Eng. 195(2017) 14-20. [74] M.V.Cangussu Cardoso, E.Sabadini, Carbohydr. Res. 345(2010) 2368-2373. [75] B.T. Nguyen, T. Nicolai, L. Benyahia, C. Chassenieux, Carbohydr. Polym. 112(2014) 10-15. [76] L. Du, T. Brenner, J. Xie, S. Matsukawa, Food Hydrocoll. 55(2016) 81-88. [77] J.K. Pedersen, Food Chem. 6(1980) 77-88. [78] S. Janaswamy, R. Chandrasekaran, Carbohydr. Res. 337(2002) 523-535. [79] Y. Cao, S. Li, Y. Fang, K. Nishinari, G.O. Phillips, A. Lerbret, A. Assifaoui, Int. J. Biol. Macromol. 109(2018) 350-356. [80] C.A. Running, R. Falshaw, S. Janaswamy, Carbohydr. Polym. 87(2012) 2735-2739. [81] Z. Yang, H.J. Yang, H.S. Yang, Food Res. Int. 107(2018) 738-746. [82] R. Stenner, N. Matubayasi, S. Shimizu, Food Hydrocoll. 54(2016) 284-292. [83] S. Boral, A. Saxena, H.B. Bohidar, J. Phys. Chem. B 112 (2008) 3625-3632. [84] Y.Z. Wang, X.H. Zhang, J.X. Zhang, Rheol. Acta 52 (2013) 39-48. [85] T. Kanaya, M. Ohkura, K. Kaji, M. Furusaka, M. Misawa, Macromolecules 27 (1994) 5609-5615. [86] B. Dai, S. Matsukawa, Carbohydr. Res. 365(2013) 38-45. [87] A.M.M.J. Borges, A.Fernando Silva, M.P. Goncalves, Carbohydr. Polym. 96(2013) 163-171. [88] A. Thomas, C.D. Gilson, T. Ahmed, J. Chem. Technol.Biotechnol. 64(1995) 73-79. [89] S. Moe, G. Skjakbraek, O. Smidsrod, H. Ichijo, J. Appl. Polym.Sci. 51(1994) 1771-1775. [90] Y.M. Qin, Text. Res. J. 75(2005) 165-168. [91] Y. Qin, H. Hu, A. Luo, J. Appl. Polym.Sci. 101(2006) 4216-4221. [92] L.H. Fan, Y.M. Du, X.H. Wang, R.H. Huang, L.N. Zhang, L. Hu, J. Macromol. Sci. A 42 (2005) 41-50. [93] L. Fan, Y. Du, B. Zhang, J. Yang, J. Zhou, J.F. Kennedy, Carbohydr. Polym. 65(2006) 447-452. [94] L. Fan, H. Zhu, H. Zheng, Y. Xu, C. Zhang, J. Appl. Polym.Sci. 106(2007) 3903-3907. [95] Q. Wang, X. Hu, Y. Du, J.F. Kennedy, Carbohydr. Polym. 82(2010) 842-847. [96] J.L. Shamshina, G. Gurau, L.E. Block, L.K. Hansen, C. Dingee, A. Walters, R. D. Rogers, J. Mater. Chem. B 2 (2014) 3924-3936. [97] V. Sa, K.G. Kornev, Carbon 49 (2011) 1859-1868. [98] Y. He, N. Zhang, Q. Gong, H. Qiu, W. Wang, Y. Liu, J. Gao, Carbohydr. Polym. 88(2012) 1100-1108. [99] X.J. Shen, P.L. Huang, J.H. Chen, Y.Y. Wu, Q.Y. Liu, R.C. Sun, BioResources 12 (2017) 8180-8198. [100] K. Varaprasad, G.M. Raghavendra, T. Jayaramudu, J. Seo, Carbohydr. Polym. 135(2016) 349-355. [101] I.R. Sweeney, M. Miraftab, G. Collyer, Carbohydr. Polym. 102(2014) 920-927. [102] K.D. Kelly, J.B. Schlenoff, ACS Appl. Mater. Interfaces 7 (2015) 13980-13986. [103] R.F. Shamoun, A. Reisch, J.B. Schlenoff, Adv. Funct. Mater. 22(2012) 1923-1931. [104] B. Sibaja, E. Culbertson, P. Marshall, R. Boy, R.M. Broughton, A. Aguilar Solano, M. Esquivel, J. Parker, L. De la Fuente, M.L. Auad, Carbohydr. Polym. 134(2015) 598-608. [105] X. Fu, Y. Liang, R. Wu, J. Shen, Z. Chen, Y. Chen, Y. Wang, Y. Xia, Carbohydr. Polym. 206(2019) 328-335. [106] E.R. Morris, D.A. Rees, G. Robinson, J. Mol. Biol. 138(1980) 349-362. [107] C. Rochas, M. Rinaudo, Biopolymers 23 (1984) 735-745. [108] M. Fu, Y. Wu, Q. Zhang, Z. Xue, C. Geng, Y. Xia, Eur. Polym. J. 150(2021) 110408. [109] L. Kong, G.R. Ziegler, Materials 4 (2011) 1805-1817. [110] L. Kong, G.R. Ziegler, Food Hydrocoll. 30(2013) 302-306. [111] L. Kong, J.J. Stapleton, G.R. Ziegler, Vib. Spectrosc. 94(2018) 61-65. [112] W. Zhang, Z. Xue, M. Yan, J. Liu, Y. Xia, Carbohydr. Polym. 150(2016) 232-240. [113] Z. Xue, W. Zhang, M. Yan, J. Liu, B. Wang, Y. Xia, RSC Adv. 7(2017) 25253-25264. [114] M. Dong, Z. Xue, J. Liu, M. Yan, Y. Xia, B. Wang, Carbohydr. Polym. 194(2018) 217-224. [115] B. Mao, A. Bentaleb, F. Louerat, T. Divoux, P. Snabre, Food Hydrocoll. 64(2017) 59-69. [116] X.X. Bao, K. Hayashi, Y.A. Li, A. Teramoto, K. Abe, Mater. Lett. 64(2010) 2435-2437. [117] J. Liu, Z. Xue, W. Zhang, M. Yan, Y. Xia, Carbohydr. Polym. 181(2018) 760-767. [118] O. Smidsrød, Carbohydr. Res. 13(1970) 359-372. [119] W. Mackie, S. Perez, R. Rizzo, F. Taravel, M. Vignon, Int. J. Biol. Macromol. 5(1983) 329-341. [120] H. Nie, A. He, J. Zheng, S. Xu, J. Li, C.C. Han, Biomacromolecules 9 (2008) 1362-1365. [121] N. Bhattarai, Z.S. Li, D. Edmondson, M.Q. Zhang, Adv. Mater. 18(2006) 1463-1467. [122] J.W. Lu, Y.L. Zhu, Z.X. Guo, P. Hu, J. Yu, Polymer 47 (2006) 8026-8031. [123] H.R. Nie, A.H. He, W.L. Wu, J.F. Zheng, S.S. Xu, J.X. Li, C.C. Han, Polymer 50 (2009) 4 926-4 934. [124] G. Kim, K.E. Park, Polym. Eng. Sci. 49(2009) 2242-2248. [125] Y.J. Lee, D.S. Shin, O.W. Kwon, W.H. Park, H.G. Choi, Y.R. Lee, S.S. Han, S.K. Noh, W.S. Lyoo, J. Appl. Polym.Sci. 106(2007) 1337-1342. [126] W. Shen, Y.L. Hsieh, Carbohydr. Polym. 102(2014) 893-900. [127] S.A. Stone, P. Gosavi, T.J. Athauda, R.R. Ozer, Mater. Lett. 112(2013) 32-35. [128] C.A. Bonino, K. Efimenko, S.I. Jeong, M.D. Krebs, E. Alsberg, S.A. Khan, Small 8 (2012) 1928-1936. [129] S.I. Jeong, M.D. Krebs, C.A. Bonino, J.E. Samorezov, S.A. Khan, E. Alsberg, Tissue Eng. Part A 17 (2011) 59-70. [130] S.V.Guerra Nista, J.Bettini, L.H. Innocentini Mei, Carbohydr. Polym. 127(2015) 222-228. [131] T. Zhao, X. Li, Y. Gong, Y. Guo, F. Quan, Q. Shi, Int. J. Biol. Macromol. 184(2021) 181-187. [132] W.W. Hu, H.N. Yu, Carbohydr. Polym. 95(2013) 716-727. [133] S.O. Gonen, M.E. Taygun, S. Kucukbayrak, Mater. Sci. Eng. C 58 (2016) 709-723. [134] W. Xu, R. Shen, Y. Yan, J. Gao, J. Mech. Behav.Biomed. 65(2017) 428-438. [135] W.W. Hu, Y.C. Wu, Z.C. Hu, Carbohydr. Polym. 183(2018) 29-36. [136] S. Shin, J. Park, J. Lee, H. Park, Y. Park, K. Lee, C. Whang, S. Lee, Langmuir 23 (2007) 9104-9108. [137] K.H. Lee, S.J. Shin, Y. Park, S. Lee, Small 5 (2009) 1264-1268. [138] Z.J. Meng, W. Wang, R. Xie, X.J. Ju, Z. Liu, L.Y. Chu, Lab Chip 16 (2016) 2673-2681. [139] E. Kang, Y.Y. Choi, S. Chae, J. Moon, J. Chang, S. Lee, Adv. Mater. 24(2012) 4271. [140] D.H. Yoon, D. Tanaka, T. Sekiguchi, S. Shoji, Macromol. Mater. Eng. 303(2018) 1700516. [141] J. Guo, Y. Yu, H. Wang, H. Zhang, X. Zhang, Y. Zhao, Small 15 (2019) 1805162. [142] X. Hu, M. Tian, N. Pan, B. Sun, Z. Li, Y. Ma, X. Zhang, S. Zhu, Z. Chen, L. Qu, Carbon 152 (2019) 106-113. [143] F.Q. Zhang, B. Wang, Y.J. Xu, P. Li, Y. Liu, P. Zhu, Cellulose 27 (2020) 8341-8349. [144] J.B. Speakman, N.H. Chamberlain, J. Soc.Dyers Colour. 60(1944) 264-272. [145] Q.S. Kong, B.B. Wang, Q. Ji, Y.Z. Xia, Z.X. Guo, J. Yu, Chin. J. Polym. Sci. 27(2009) 807-812. [146] J. Zhang, Q. Ji, F. Wang, L. Tan, Y. Xia, Polym. Degrad. Stab. 97(2012) 1034-1040. [147] J. Zhang, Q. Ji, X. Shen, Y. Xia, L. Tan, Q. Kong, Polym. Degrad. Stab. 96(2011) 936-942. [148] Z.X. Xue, W.W. Zhang, M. Yan, J.J. Liu, B.B. Wang, Y.Z. Xia, RSC Adv. 7(2017) 25253-25264. [149] L. Zhang, Y.X. Zeng, Z.J. Cheng, J. Mol. Liq. 214(2016) 175-191. [150] A. Ulu, M. Alpaslan, A. Gultek, B. Ates, Mater. Chem. Phys. 278(2022) 125611. [151] T.C. Mokhena, N.V. Jacobs, A.S. Luyt, Express. Polym. Lett. 11(2017) 652-663. [152] K. Sui, Y. Li, R. Liu, Y. Zhang, X. Zhao, H. Liang, Y. Xia, Carbohydr. Polym. 90(2012) 399-406. [153] Q. Wang, J.P. Ju, Y.Q. Tan, L.Y. Hao, Y.L. Ma, Y. Wu, H.W. Zhang, Y.Z. Xia, K.Y. Sui, Carbohydr. Polym. 205(2019) 125-134. [154] S.J. Zhang, Y.P. Deng, Q.H. Wu, Y. Zhou, J.T. Li, Z.Y. Wu, Z.W. Yin, Y.Q.Lu C. H. Shen, L. Huang, S.G. Sun, Chemelectrochem 5 (2018) 1321-1329. [155] J. Li, Y. Zhao, N. Wang, Y. Ding, L. Guan, J. Mater. Chem. 22(2012) 13002-13004. [156] M. Ryou, S. Hong, M. Winter, H. Lee, J.W. Choi, J. Mater. Chem. A 1 (2013) 15224-15229. [157] W. Bao, Z. Zhang, Y. Gan, X. Wang, J. Lia, J. Energy. Chem. 22(2013) 790-794. [158] D.H. Li, D.J. Yang, X.Y. Zhu, D.W. Jing, Y.Z. Xia, Q. Ji, R.S. Cai, H.L. Li, Y.K. Che, J. Mater. Chem. A 2 (2014) 18761-18766. [159] Y. Zhao, M.J. Li, J. Qiu, Q.S. Kong, Y. Zhang, C.X. Li, Mater. Des. 101(2016) 317-322. [160] J. Sun, C. Lv, F. Lv, S. Chen, D. Li, Z. Guo, W. Han, D. Yang, S. Guo, ACS Nano 11 (2017) 6186-6193. [161] Y.H. Zou, X.F. Yang, C.X. Lv, T.C. Liu, Y.Z. Xia, L. Shang, G.I.N.Waterhouse, D. J. Yang, T.R. Zhang, Adv. Sci. 4(2017) 8. [162] D. Li, Y. Sun, S. Chen, J. Yao, Y. Zhang, Y. Xia, D. Yang, ACS Appl. Mater. Inter-faces 10 (2018) 17175-17182. [163] M. Yang, J. Hou, Membranes 2 (2012) 367-383. [164] X. Huang, J. Solid State Electrochem. 15(2011) 649-662. [165] Y. An, L. Gao, T. Wang, ACS Appl. Nano Mater. 3(2020) 5079-5087. [166] H. Wen, J. Zhang, J. Chai, J. Ma, L. Yue, T. Dong, X. Zang, Z. Liu, B. Zhang, G. Cui, ACS Appl. Mater. Interfaces 9 (2017) 3694-3701. [167] S.K. Papageorgiou, E.P. Kouvelos, E.P. Favvas, A.A. Sapalidis, G.E. Romanos, F.K. Katsaros, Carbohydr. Res. 345(2010) 469-473. [168] L. Fuks, D. Filipiuk, M. Majdan, J. Mol. Struct. 792(2006) 104-109. [169] L. Tan, Z. Li, R. Shi, F. Quan, B. Wang, X. Ma, Q. Ji, X. Tian, Y. Xia, ACS Appl. Mater. Interfaces 12 (2020) 38175-38182. [170] Y. Li, M. Gong, Y. Liang, J. Feng, J.-.E. Kim, H.Wang, G. Hong, B. Zhang, H. Dai, Nat. Commun. 4(2013) 1805. [171] W. Zhao, P. Yuan, X. She, Y. Xia, S. Komarneni, K. Xi, Y. Che, X. Yao, D. Yang, J. Mater. Chem. A 3 (2015) 14188-14194. [172] D.H. Li, C.X. Lv, L. Liu, Y.Z. Xia, X.L. She, S.J. Guo, D.J. Yang, ACS Central. Sci. 1(2015) 261-269. [173] Y. Zou, G. Chang, Y. Jia, R. Cai, S. Chen, Y. Xia, W. Theis, D. Yang, X. Yao, Energy. Storage. Mater. 15(2018) 202-208. [174] M.A. Taemeh, A. Shiravandi, M.A. Korayem, H. Daemi, Carbohydr. Polym. 228(2020) 115419. [175] A. Mirabedini, J. Foroughi, T. Romeo, G.G. Wallace, Macromol. Mater. Eng. 300(2015) 1217-1225. [176] P. Chuysinuan, C. Pengsuk, K. Lirdprapamongkol, S. Techasakul, J. Svasti, P. Nooeaid, Fiber. Polym. 20(2019) 1-10. [177] A. Kyziol, J. Michna, I. Moreno, E. Gamez, S. Irusta, Eur. Polym. J. 96(2017) 350-360. [178] A.Y.A. Kaassis, N. Young, N. Sano, H.A. Merchant, D. Yu, N.P. Chatterton, G.R. Williams, J. Mater. Chem. B 2 (2014) 1400-1407. [179] E. Tamizi, M. Azizi, M.S.S.Dorraji, Z. Dusti, V.Panahi-Azar, Polym. Bull. 75(2018) 547-560. [180] Z. Sadrearhami, M. Morshed, J. Varshosaz, Fiber. Polym. 16(2015) 254-262. [181] D. Johnston, P. Kumar, Y.E. Choonara, L.C. du Toit, V.Pillay, J. Mech, Behav. Biomed. 23(2013) 80-102. [182] W.F. Lai, E. Huang, K.H. Lui, Asian J. Pharm. Sci. 16(2021) 77-85. [183] B.R. Lee, K.H. Lee, E. Kang, D.S. Kim, S. Lee, Biomicrofiuidics 5 (2011) 22208. [184] K. Tarun, N. Gobi, Indian J. Fibre Text. 37(2012) 127-132. [185] R.Q. Fu, C.W. Li, C.P. Yu, H. Xie, S.J. Shi, Z.H. Li, Q. Wang, L.C. Lu, Drug Deliv. 23(2016) 828-839. [186] W.W. Hu, Y.T. Lin, Carbohydr. Polym. 289(2022) 119440. [187] J.I. Choi, M.S. Kim, G.Y. Chung, H.S. Shin, Bio. Technol. Bioproc. E 22 (2017) 679-685. [188] W. Ma, S. Ling, J. Zhang, Z. Chen, J. Xu, J. Polum. Sci. 60(2022) 1741-1749. [189] G. Ma, D. Fang, Y. Liu, X. Zhu, J. Nie, Carbohydr. Polym. 87(2012) 737-743. [190] Y. Chen, C. Cheng, W. Chang, Y. Lin, F. Lin, J. Lin, Mater. Sci. Eng. C 62 (2016) 338-349. [191] M. Bogun, I. Krucinska, A. Komisarczyk, T. Mikolajczyk, M. Blazewicz, E. Stodolak-Zych, E. Menaszek, A. Scislowska-Czarnecka, Molecules 18 (2013) 3118-3136. [192] S.C.Y. Lin, Y. Wang, D.F. Wertheim, A.G.A. Coombes, Mater. Sci. Eng. C 73 (2017) 653-664. [193] Y. Luo, B. Chen, X. Zhang, S. Huang, Q. Wa, Int. J. Biol. Macromol. 202(2022) 366-374. [194] M.S. Kim, G. Kim, Carbohydr. Polym. 114(2014) 213-221. [195] C. Rinoldi, M. Costantini, E. Kije ńska-Gawro ńska, S.Testa, E. FornettiM. Hel-jak, M. Ćwikli ńska, R. Buda, J. Baldi, S. Cannata, J. Guzowski, C. Gargioli, Adv. Healthc. Mater. 8(2019) 1801218. [196] A. Zhou, Y. Hu, C. Chen, H. Mao, L. Wang, S. Zhang, X. Huang, Int. J. Polym. Mater. Polym. Biomat. (2022), doi: 10.1080/00914037.2022.2032704. [197] S.M. Mihaila, E.G. Popa, R.L. Reis, A.P. Marques, M.E. Gomes, Biomacro-molecules 15 (2014) 2849-2860. [198] L. Thu-Hien, N. Thanh-Truc, V.V. Toi, H.C. Khon, B.C. Bao, V.V.T. Niem, M. Ngoc Tuan Anh, N.D. Hai, P.D. Chuong, N.T. Hiep, Int. J. Polym. Sci. (2018) 5049728. |
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