POLYMERS AND POLYMER MATRIX COMPOSITES |
|
|
|
|
|
Research Progress of Construction and Functional Application of Micro-Nanoscale Hollow Organic Particles |
ZHANG Jing, GAO Chenchen, WU Mingming, CHEN Cheng*
|
Key Laboratory for Characteristic Textiles & Cleaner Dyeing and Finishing Technology, Xinjiang University, Urumqi 830017, China |
|
|
Abstract With the continuous development of materials science, hollow particles, on account of high specific surface area, low density, excellent stability and other advantages, have become a hot research topic in functional materials. In this review, we firstly introduce the basic types of hollow particles, including hollow inorganic particles, hollow organic particles. Nowadays, micro-nanoscale organic hollow particles have attracted much attention, due to their significant advantages, such like stable structure, strong modifier, easy regulation and wide application field. Based on above mentioned, the main preparation strategy of hollow organic particles is discussed in detail. Then, the research progress for the structure formation and morphology regulation, with regard to micro-scale, nano-scale and micro-nanoscale organic hollow particles, are elaborated. Finally, the application progress of micro-nanoscale organic hollow particles is expounded in drug carrier, catalysis, sensing, energy storage and other fields, and the construction method and development trend of micro-nanoscale organic hollow particles are prospected.
|
Published: 10 November 2024
Online: 2024-11-11
|
|
Fund:Key Research and Development Special Task Project of Xinjiang(2022B01045-4), Tianchi Doctoral Program of Xinjiang (TCBS202011) and PhD Start-up Fund of Xinjiang University (BS210215). |
|
|
1 Wang Y B.Research on the construction of hollow materials by template method and its application. Master's Thesis, Dissertation of Shaanxi Normal University, China, 2017(in Chinese). 王延兵. 模板法构筑空心材料及其应用研究.硕士学位论文,陕西师范大学,2017. 2 Wang H, Pumera M. Chemical Reviews, 2015, 115(16), 8704. 3 Wichaita W, Polpanich D, Tangboriboonrat P. Industrial & Engineering Chemistry Research, 2019, 58(46), 20880. 4 Xie X C, Huang K J, Wu X. Journal of Materials Chemistry A, 2018, 6(16), 6754. 5 Xiao T, Kuang J, Pu H, et al. Journal of Alloys and Compounds, 2021, 862, 158032. 6 Li M, Gao Y, Jiang M, et al. Bioactive Materials, 2023, 26, 116. 7 Chattopadhyay J, Pathak T S, Pak D, et al. Molecules, 2016, 33, 1514. 8 Munkaila S, Dahal R, Kokayi M, et al. The Chemical Record, 2022, 22(8), e202200084. 9 Arias F J. International Journal of Heat and Mass Transfer, 2023, 209, 124111. 10 Lei Q, He F, Zhao X, et al. Macromolecular Rapid Communications, 2022, 43(5), 2100769. 11 Zhu W, Chen Z, Pan Y, et al. Advanced Materials, 2019, 31(38), 1800426. 12 Yang J, Zhang X, Li W, et al. Journal of the American Ceramic Society, 2023, 106(6), 3884. 13 Lei Q, He F, Zhao X, et al. Macromolecular Rapid Communications, 2022, 43(5), 2100769. 14 Xu Y, Wang T, He Z, et al. Polymer, 2018, 151, 92. 15 Omura T, Suzuki T, Minami H. Langmuir, 2021, 37(31), 9371. 16 Wang F, Liu J, Wang D, et al. Nanoscale, 2019, 11(32), 15017. 17 Huang P, Chen Y, Lin H, et al. Biomaterials, 2017, 125, 23. 18 Zhang S, Pelligra C I, Feng X, et al. Advanced Materials, 2018, 30(18), 1705794. 19 Celiker T, Suerkan A, Altinisik S, et al. Polymer Chemistry, 2021, 12(32), 4654. 20 Bracho-Sanchez E, Xia C Q, Clare-Salzler M J, et al. American Journal of Transplantation, 2016, 16(12), 3362. 21 Hu Y, Xia Q, Huang W, et al. Microchimica Acta, 2018, 185, 1. 22 Zhang S, Pelligra C I, Feng X, et al. Advanced Materials, 2018, 30(18), 1705794. 23 Halder A, Sun Y. Biosensors and Bioelectronics, 2019, 139, 111334. 24 Luo H, Wang S, Meng X, et al. Materials Chemistry Frontiers, 2023, 135, 26. 25 El-khatib A M, Elsafi M, Sayyed M I, et al. Results in Physics, 2021, 30, 104908. 26 Wei G, Wang L, Ding Z, et al. Journal of Colloid and Interface Science, 2023, 642, 648. 27 Park S H, Kim J, Hur S H, et al. Chemical Engineering Journal, 2018, 348, 46. 28 Kim G, Park K, Zheng Z, et al. Langmuir, 2020, 36(22), 6202. 29 Gao R, Guo Z, Zhou J, et al. Journal of Catalysis, 2020, 385, 103. 30 Hwang J, Kim S, Wiesner U, et al. Advanced Materials, 2018, 30(27), 1801127. 31 Kim H, Lah M S. Dalton Transactions, 2017, 46(19), 6146. 32 Kozhunova E, Ji Q, Hill J P, et al. Journal of Nanoscience and Nanotechnology, 2015, 15(3), 2389. 33 Cho K, Kang C W, Ryu S H, et al. Journal of Materials Chemistry A, 2022, 10(13), 6950. 34 Wichaita W, Polpanich D, Kaewsaneha C, et al. Colloids and Surfaces B: Biointerfaces, 2019, 184, 110557. 35 Komamura T, Okuhara K, Horiuchi S, et al. ACS Applied Polymer Materials, 2019, 1(5), 1209. 36 Koshino M, Shiraishi Y, Atobe M. Ultrasonics Sonochemistry, 2019, 54, 250. 37 Du Y, Gao J, Zhou L, et al. Advanced Science, 2019, 6(6), 1801684. 38 Wang Y, He X. RSC Advances, 2018, 8(24), 13526. 39 Kazemi-Andalib F, Mohammadikish M, Divsalar A, et al. European Polymer Journal, 2022, 162, 110887. 40 Jiang X, Cao H, Zhang L, et al. Polymer, 2021, 228, 123946. 41 Zhang Z, Cheng M, San G M, et al. Journal of Colloid and Interface Science, 2019, 555, 489. 42 Yang X, Zhang J, Chen R. Applied Chemical Industry,2021, 50(10), 2877 (in Chinese). 杨旭, 张静, 陈蕊. 应用化工, 2021, 50(10), 2877. 43 Ji J, Deng C, Liu X, et al. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2020, 591, 124537. 44 Weng W, Lin J, Du Y, et al. Journal of Materials Chemistry A, 2018, 6(22), 10168. 45 Qiao Y, Li Q, Li Q, et al. Composites Communication, 2022, 33, 101197. 46 Wichaita W, Polpanich D, Kaewsaneha C, et al. Colloids and Surfaces B: Biointerfaces, 2019, 184, 110557. 47 Matsuura T, Maruyama T. Colloid and Polymer Science, 2017, 295(7), 1251. 48 Ai K, Li Z, Li W, et al. Particle & Particle Systems Characterization, 2018, 35(10), 1800266. 49 Munkaila S, Dahal R, Kokayi M, et al. The Chemical Record, 2022, 22(8), e202200084. 50 Lv H, Sun L, Lopes A, et al. The Journal of Physical Chemistry Letters, 2019, 10(18), 5490. 51 Nonappa J S, Haataja J V I, Timonen S M P, et al. Angewandte Chemie International Edition, 2017, 56, 6473. 52 Wang J, Liu H. RSC Advances, 2016, 6(3), 2374. 53 Seydibeyoğlu M Ö, Dogru A, Wang J, et al. Polymers, 2023, 15(4), 984. 54 Celiker T, Suerkan A, Altinisik S, et al. Polymer Chemistry, 2021, 12(32), 4654. 55 Bracho-Sanchez E, Xia C Q, Clare-Salzler M J, et al. American Journal of Transplantation, 2016, 16(12), 3362. 56 Hu Y, Xia Q, Huang W, et al. Microchimica Acta, 2018, 185, 1. 57 Zhou J, Zhao H, Wang J, et al. Materials Chemistry and Physics, 2016, 181, 150. 58 Minami H, Kojima A, Suzuki T. Langmuir, 2017, 33(6), 1541. 59 Chen Y, Lu Z, Liu Q. Journal of Membrane Science, 2019, 592, 117384. 60 Watanabe T, Yamamoto E, Uchida S, et al. Langmuir, 2020, 36(46), 13833. 61 Liu W, Ma N, Li S, et al. Journal of Materials Science, 2017, 52, 2868. 62 Xu J Q, Chen Z, Ren D, et al. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2020, 592, 124579. 63 Feng L, Zhang Y, Xi J, et al. Langmuir, 2008, 24(8), 4114. 64 Yin Y, Liu M, Wei W, et al. Particle & Particle Systems Characterization, 2018, 35(12), 1800323. 65 Wang J, Pan M, Yuan J, et al. ACS Applied Materials & Interfaces, 2021, 13(12), 14669. 66 Matsubayashi T, Tenjimbayashi M, Manabe K, et al. RSC Advances, 2016, 6(19), 15877. 67 Li B, Luo W, Wang Y, et al. Journal of Non-Crystalline Solids, 2016, 447, 98. 68 Ziarani G M, Malmir M, Lashgari N, et al. RSC Advances, 2019, 9(43), 25094. 69 Fu Y, Li Y, Li G, et al. Biomacromolecules, 2017, 18(7), 2195. 70 Song W, Zhang Y, Yu D G, et al. Biomacromolecules, 2020, 22(2), 732. 71 Fujii S, Kozuka S, Yokota K, et al. Langmuir, 2022, 38(18), 5812. 72 Xiao J, Cheng K, Xie X, et al. Nature Materials, 2022, 21(5), 572. 73 Yu X H, Yi J L, Zhang R L, et al. Frontiers of Chemical Science and Engineering, 2021, 15, 1380. 74 Choi S J, Choi E H, Song C, et al. ACS Macro Letters, 2019, 8(6), 687. 75 Yan Z, Xie G, Zhang J, et al. Molecular Catalysis, 2019, 464, 39. 76 Huang Y, Zhang X R, Ye S, et al. Nanoscale, 2019, 11(28), 13502. 77 Ryu S H, Lee D H, Lee S M, et al. Chemical Communications, 2019, 55(64), 9515. 78 Park N, Ko K C, Shin H W, et al. Journal of Materials Chemistry A, 2016, 4(21), 8010. 79 Abid A, Razzaque S, Hussain I, et al. Macromolecules, 2021, 54(12), 5848. 80 Zhang Y T, Yang Z H, Dou Y, et al. Chemical Engineering Journal, 2022, 442,136155. 81 Choi J, Ko J H, Kang C W, et al. Journal of Materials Chemistry A, 2018, 6(15), 6233. 82 Li Y, Qin Y, Zhao J, et al. ACS Applied Materials & Interfaces, 2022, 14(16), 18360. |
|
|
|