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Research Articles

Structural, optical, and mechanical characterization of PMMA-MXene composites functionalized with MEMO silane

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Pages 215-226 | Received 21 Apr 2022, Accepted 27 Nov 2022, Published online: 28 Jan 2023

References

  • Anasori B, Gogotsi Y. 2D Metal carbidesand nitrides (MXenes) structure, propertiesand applications. Switzerland: Springer, 2019.
  • Naguib M, Mashtalir O, Carle J, et al. Two-dimensional transition metal carbides. ACSNano. 2012;6(2):1322–1331.
  • Naguib AM. MXenes: a new family of two-dimensional materialsand its application as electrodes for Li-ion batteries. Philadelphia: Drexel University, 2014.
  • Barsoum MW, Gogotsi Y, Abdelmalak MN, et al. Compositions comprising free standing two dimensional nanocrystals US Patent 9,193,595, 2015.
  • Anasori B, Xie Y, Beidaghi M, et al. Two-dimensional ordered double transition metals carbides (MXenes). ACS Nano. 2015;9(10):9507–9516.
  • Anasori B, Lukatskaya MR, Gogotsi Y. 2D metal carbides and nitrides (MXenes) for energystorage. Nat Rev Mater. 2017;2(2):16098.
  • Chaudhari NK, Jin H, Kim B, et al. MXene: an emerging two-dimensional material for future energy conversion and storage applications. J Mater Chem A. 2017;5(47):24564–24579.,
  • Khazaei M, Ranjbar A, Arai M, et al. Electronic properties and applications of MXenes: a theoretical review. J Mater Chem C. 2017;5(10):2488–2503.
  • Sahoo PK, Samal R. Fire retardancy and biodegradability of poly(methyl methacrylate)/montmorillonite nanocomposite. Polymer Degrad Stabil. 2007;92(9):1700–1707.
  • Khalaf AI, Assem Y, Yehia AA, et al. Synthesis and characterization of hybrid clay/poly (N,N dimethylaminoethyl methacrylate) nanocomposites. Polym Compos. 2016;37(10):2950–2959.
  • Unnikrishnan L, Mohanty S, Nayak SK, et al. Preparation and characterization of poly(methyl methacrylate)–clay nanocomposites via melt intercalation: the effect of organoclay on the structure and thermal properties. Mater Sci Eng A. 2011;528(12):3943–3951.
  • Pang L, Shen Y, Tetz K, et al. PMMA quantum dots composites fabricated via use of pre-polymerization. Opt Express. 2005;13(1):44–49.
  • Feizi S, Zare H, Hoseinpour M. Investigation of dosimetric characteristics of a core–shell quantum dots nano composite (CdTe/CdS/PMMA): fabrication of a new gamma sensor. Appl Phys A. 2018;124(6):1–7.
  • Al-Ammar K, Hashim A, Husaien M. Synthesis and study of optical properties of (PMMA-CrCl2) composites. cme. 2013;1(3):85–87.
  • Kumar M, Shanmuga Priya N, Kanagaraj S, et al. Melt rheological behavior of PMMA nanocomposites reinforced with modified nanoclay. Nanocomposites. 2016;2(3):109–116.
  • Huang X, Brittain WJ. Synthesis and characterization of PMMA nanocomposites by suspension and emulsion polymerization. Macromolecules. 2001;34(10):3255–3260.
  • Tan W. K, Yokoi A, Kawamura G, et al. PMMA-ITO composite formation via electrostatic assembly method for infra-red filtering. Nanomaterials (Basel, Switzerland). 2019;9(6):886.
  • Borysiuk VN, Mochalin VN, Gogotsi Y. Molecular dynamic study of the mechanical properties of two-dimensional titanium carbides Tin+1Cn (MXenes). Nanotechnology. 2015;26(26):265705.
  • Lipatov A, Lu H, Alhabeb M, et al. Elastic properties of 2D Ti3C2Tx MXene monolayers and bilayers. Sci Adv. 2018;4(6):eaat0491.
  • Huang X, Wang R, Jiao T, et al. Facile preparation of hierarchical AgNP-loaded MXene/Fe3O4/polymer nanocomposites by electrospinning with enhanced catalytic performance for wastewater treatment. ACS Omega. 2019;4(1):1897–1906.
  • Wang Y, Wang J, Han G, et al. Pt decorated Ti3C2 MXene for enhanced methanol oxidation reaction. Ceramics Int. 2019;45(2):2411–2417.
  • Lv TY, Min L, Niu F, et al. Wrinkle-structured MXene film assists flexible pressure sensors with superhigh sensitivity and ultrawide detection range. Nanocomposites. 2022;8(1):81–94. Chicago,
  • Sliozberg Y, Andzelm J, Hatter CB, et al. Interface binding and mechanical properties of MXene-epoxy nanocomposites. Compos Sci Technol. 2020;192:108124.
  • Wan YJ, Li XM, Zhu PL, et al. Lightweight, flexible MXene/polymer film with simultaneously excellent mechanical property and high-performance electromagnetic interference shielding. Composites Part A. 2020;130:105764.
  • Gong K, Zhou K, Qian X, et al. MXene as emerging nanofillers for high performance polymer composites: a review. Composites Part B. 2021;217:108867.
  • Echols IJ, An H, Yun J, et al. Electronic and optical property control of polycation/MXene layer-by-layer assemblies with chemically diverse MXenes. Langmuir. 2021;37(38):11338–11350.
  • Xiantao J, Kuklin AV, Baev A, et al. Two-dimensional MXenes: from morphological to optical, electric, and magnetic properties and applications. Physics Reports. 2020;848:1–58.
  • Enyashin AN, Ivanovskii AL. Two-dimensional titanium carbonitrides and their hydroxylated derivatives: structural, electronic propertis and stability of MXenes Ti3C2 − xNx(OH)2 from DFTB calculations. J Solid State Chem. 2013;207:42–48.
  • Sang X, Xie Y, Lin MW, et al. Atomic defects in monolayer titanium carbide (Ti3C2T x) MXene. ACS Nano. 2016;10(10):9193–9200.
  • Lei L, Xiaoya L, Jianfeng W, et al. Corrigendum to new application of MXene in polymer composites toward remarkable antidripping performance for flame retardancy. Composites Part A. 2022; 157:106932.
  • Zhao J, Yang Y, Yang C, et al. A hydrophobic surface enabled salt-blocking 2D Ti3C2 MXene membrane for efficient and stable solar desalination. J Mater Chem A. 2018;6(33):16196–16204.
  • Xinxin S, Yanfeng Z, Li Z, et al. Properties of two-dimensional Ti3C2 MXene/thermoplastic polyurethane nanocomposites with effective reinforcement via melt blending. Compos Sci Technol. 2019;181:107710.
  • Tao L, Bing D, Jie W, et al. Sandwich-structured ordered mesoporous polydopamine/MXene hybrids as high-performance anodes for lithium-ion batteries. ACS Appl Mater Interfaces. 2020;12(13):14993–15001.
  • Zhang Y, Wang L, Zhang J, et al. Fabrication and investigation on the ultra-thin and flexible Ti3C2Tx/co-doped polyaniline electromagnetic interference shielding composite films. Compos Sci Technol. 2019;183:107833.
  • Haq YU, Murtaza I, Mazhar S, et al. Investigation of improved dielectric and thermal properties of ternary nanocomposite PMMA/MXene/ZnO fabricated by in-situ bulk polymerization. J Appl Polym Sci. 2020;137(40):e49197.
  • Stojanovic D, Orlovic A, Glisic SB, et al. Preparation of MEMO silane-coated SiO2 nanoparticles under high pressure of carbon dioxide and ethanol. J Supercrit Fluids. 2010;52(3):276–284.
  • Biswas S, Alegaonkar PS. MXene: evolutions in chemical synthesis and recent advances in applications. Surfaces. 2021;5(1):1–36.
  • Pešić J, Šolajić A, Mitrić J, et al. Structural and optical characterization of titanium–carbide and polymethyl methacrylate based nanocomposite. Opt Quantum Electron. 2022;54(6):1–13.
  • Riazi H, Anayee M, Hantanasirisakul K, et al. Surface modification of a MXene by an aminosilane coupling agent. Adv Mater Interfaces. 2020;7(6):1902008.
  • Ahmad S, Ahmad S, Agnihotry SA. Synthesis and characterization of in situ prepared poly (methyl methacrylate) nanocomposites. Bull Mater Sci. 2007;30(1):31–35.
  • Doğan S, Özcan T, Doğan M, et al. The effects on antioxidant enzymes of PMMA/hydroxyapatite nanocomposites/composites. Enzyme Microb Technol. 2020;142:109676. 109676,
  • Dong Y, Sang D, He C, et al. Mxene/alginate composites for lead and copper ion removal from aqueous solutions. RSC Adv. 2019;9(50):29015–29022.
  • Djire A, Zhang H, Liu J, et al. Electrocatalytic and optoelectronic characteristics of the two dimensional titanium nitride Ti4N3Tx MXene. ACS Appl Mater Interfaces. 2019;11(12):11812–11823.
  • Natu V, Clites M, Pomerantseva E, et al. Mesoporous MXene powders synthesized by acid induced crumpling and their use as na-ion battery anodes. Mater Res Lett. 2018;6(4):230–235.
  • Zhao MQ, Xie X, Ren CE, et al. Hollow MXene spheres and 3D macroporous MXene frameworks for Na‐ion storage. Adv Mater. 2017;29(37):1702410.
  • Woo JH, Kim NH, Kim SI, et al. Effects of the addition of boric acid on the physical properties of MXene/polyvinyl alcohol (PVA) nanocomposite. Composites Part B. 2020;199:108205.
  • Ali Sabri B, Satgunam M, Abreeza N, et al. A review on enhancements of PMMA denture base material with different nano-fillers. Cogent Eng. 2021;8(1):1875968.
  • Jimmy J, Kandasubramanian B. Mxene functionalized polymer composites: synthesis and applications. Eur Polym J. 2020;122:109367.
  • Sellam C, Zhai Z, Zahabi H, et al. High mechanical reinforcing efficiency of layered poly(vinyl alcohol) – graphene oxide nanocomposites. Nanocomposites. 2015;1(2):89–95.
  • Kłysz S, Lisiecki J. Selected problems of measurement uncertainty – part I. Tech Sci. 2008;11(1):253–264.
  • Kłysz S, Lisiecki J. Selected problems of measurement uncertainty – part II. Tech Sci. 2008;11(1):265–276.
  • Podgornik B, Žužek B, Sedlaček M, et al. Analysis of factors influencing measurement accuracy of al alloy tensile test results. Meas Sci Rev. 2016;16(1):1–7.
  • Maleski K, Mochalin VN, Gogotsi Y. Dispersions of two-dimensional titanium carbide MXene in organic solvents. Chem Mater. 2017;29, 4:1632–1640.
  • Desai ML, Basu H, Singhal RK, et al. Ultra-small two dimensional MXene nanosheets for selective and sensitive fluorescence detection of ag + and Mn2+ ions. Colloids Surf A. 2019;565:70–77.
  • Zhang Q, Wang F, Zhang H, et al. Universal Ti3C2 MXenes based Self-Standard ratiometric fluorescence resonance energy transfer platform for highly sensitive detection of exosomes. Anal Chem. 2018;90(21):12737–12744.
  • Abozaid RM, Lazarević ZŽ, Radović I, et al. Vesna Radojević, optical properties and fluorescence of quantum dots CdSe/ZnS-PMMA composite films with interface modifications. Opt Mater. 2019;92:405–410.