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Articles

A computer simulation study of the hierarchical assembly behaviour of triblock patchy particles

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Pages 759-767 | Received 28 Jun 2018, Accepted 03 Mar 2019, Published online: 19 Mar 2019

References

  • Atwood JL. Kagome lattice: a molecular toolkit for magnetism. Nat Mater. 2002;1(2):91–92.
  • Champion JA, Mitragotri S. Role of target geometry in phagocytosis. Proc Natl Acad Sci. 2006;103(13):4930–4934.
  • Fleischhaker F, Zentel R. Photonic crystals from core-shell colloids with incorporated highly fluorescent quantum dots. Chem Mater. 2005;17(6):1346–1351.
  • Gröschel AH, Schacher FH, Schmalz H, et al. Precise hierarchical self-assembly of multicompartment micelles. Nat Commun. 2012;3:710.
  • Ikkala O, ten Brinke G. Hierarchical self-assembly in polymeric complexes: towards functional materials. Chem Commun. 2004;(19):2131–2137.
  • Onoe H, Matsumoto K, Shimoyama I. Three-Dimensional sequential self-assembly of microscale objects. Small. 2007;3(8):1383–1389.
  • Pawar AB, Kretzschmar I. Fabrication, assembly, and application of patchy particles. Macromol Rapid Commun. 2010;31(2):150–168.
  • Shah AA, Schultz B, Kohlstedt KL, et al. Synthesis, assembly, and image analysis of spheroidal patchy particles. Langmuir. 2013;29(15):4688–4696.
  • Trau M, Battersby BJ. Novel colloidal materials for high-throughput screening applications in drug discovery and genomics. Adv Mater. 2001;13(12-13):975–979.
  • Walther A, Müller AHE. Janus particles: synthesis, self-assembly, physical properties, and applications. Chem Rev. 2013;113(7):5194–5261.
  • Xia Y, Gates B, Yin Y, et al. Monodispersed colloidal spheres: old materials with new applications. Adv Mater. 2000;12(10):693–713.
  • Ikkala O, ten Brinke G. Functional materials based on self-assembly of polymeric supramolecules. Sciences. 2002;295(5564):2407–2409.
  • Mezzenga R, Ruokolainen J, Fredrickson GH, et al. Templating organic semiconductors via self-assembly of polymer colloids. Sciences. 2003;299(5614):1872–1874.
  • He Y, Ye T, Su M, et al. Hierarchical self-assembly of DNA into symmetric supramolecular polyhedra. Nature. 2008;452(7184):198–201.
  • Keizer HM, Sijbesma RP. Hierarchical self-assembly of columnar aggregates. Chem Soc Rev. 2005;34(3):226–234.
  • Miszta K, de Graaf J, Bertoni G, et al. Hierarchical self-assembly of suspended branched colloidal nanocrystals into superlattice structures. Nat Mater. 2011;10(11):872–876.
  • Galisteo-López JF, Ibisate M, Sapienza R, et al. Self-assembled photonic structures. Adv Mater. 2011;23(1):30–69.
  • Yuan J, Xu Y, Mueller AHE. One-dimensional magnetic inorganic-organic hybrid nanomaterials. Chem Soc Rev. 2011;40(2):640–655.
  • Sperschneider A, Schacher F, Gawenda M, et al. Towards nanoporous membranes based on ABC triblock terpolymers. Small. 2007;3(6):1056–1063.
  • Walther A, Muller AHE. Janus particles. Soft Matter. 2008;4(4):663–668.
  • Walther A, Drechsler M, Mueller AHE. Structures of amphiphilic Janus discs in aqueous media. Soft Matter. 2009;5(2):385–390.
  • Li X, Zhou J, Wang Q, et al. Patterning graphitic C-N sheets into a kagome lattice for magnetic materials. J Phys Chem Lett. 2013;4(2):259–263.
  • Mao J, Zhang H, Jiang Y, et al. Tunability of supramolecular kagome lattices of magnetic phthalocyanines using graphene-based moire patterns as templates. J Am Chem Soc. 2009;131(40):14136–14137.
  • Shi Z, Lin N. Porphyrin-based two-dimensional coordination kagome lattice self-assembled on a Au(111) surface. J Am Chem Soc. 2009;131(15):5376–5377.
  • Zhang H, Xiao WD, Mao J, et al. Host-Guest superstructures on graphene-based kagome lattice. J Phys Chem C. 2012;116(20):11091–11095.
  • He J, Huang X, Li YC, et al. Self-Assembly of amphiphilic plasmonic micelle-like nanoparticles in selective solvents. J Am Chem Soc. 2013;135(21):7974–7984.
  • Zhang G, Wang D, Möhwald H. Nanoembossment of Au patterns on microspheres. Chem Mater. 2006;18(17):3985–3992.
  • Glotzer SC, Horsch MA, Iacovella CR, et al. Self-assembly of anisotropic tethered nanoparticle shape amphiphiles. Curr Opin Colloid Interface Sci. 2005;10(5-6):287–295.
  • Ma C, Wu H, Huang ZH, et al. A filled-honeycomb-structured crystal formed by self-assembly of a janus polyoxometalate-silsesquioxane (pom-poss) co-cluster. Angewandte Chemie International Edition. 2015;54(52):15699–15704.
  • Guo R, Mao J, Xie XM, et al. Predictive supracolloidal helices from patchy particles. Sci Rep. 2015;4:7021.
  • Huang Z, Chen P, Yang Y, et al. Shearing janus nanoparticles confined in two-dimensional space: Reshaped cluster configurations and defined assembling kinetics. J Phys Chem Lett. 2016;7(11):1966–1971.
  • Yanai N, Granick S. Directional Self-Assembly of a colloidal metal-organic framework. Angew Chem Int Edit. 2012;51(23):5638–5641.
  • Zhang ZL, Glotzer SC. Self-assembly of patchy particles. Nano Lett. 2004;4(8):1407–1413.
  • van der Marck SC. Site percolation and random walks on D-dimensional Kagomé lattices. J Phys A. 1998;31(15):3449–3460.
  • Souslov A, Liu AJ, Lubensky TC. Elasticity and response in nearly isostatic periodic lattices. Phys Rev Lett. 2009;103(20):205503.
  • Sun K, Souslov A, Mao X, et al. Surface phonons, elastic response, and conformal invariance in twisted kagome lattices. Proc Natl Acad Sci. 2012;109(31):12369–12374.
  • Giacometti A, Lado F, Largo J, et al. Effects of patch size and number within a simple model of patchy colloids. J Chem Phys. 2010;132(17):174110.
  • Romano F, Sciortino F. Colloidal self-assembly: patchy from the bottom up. Nat Mater. 2011;10(3):171–173.
  • Romano F, Sciortino F. Two dimensional assembly of triblock Janus particles into crystal phases in the two bond per patch limit. Soft Matter. 2011;7(12):5799–5804.
  • Munao G, Preisler Z, Vissers T, et al. Cluster formation in one-patch colloids: low coverage results. Soft Matter. 2013;9(9):2652–2661.
  • Vissers T, Preisler Z, Smallenburg F, et al. Predicting crystals of Janus colloids. J Chem Phys. 2013;138(16):164505.
  • Chen Q, Bae SC, Granick S. Directed self-assembly of a colloidal kagome lattice. Nature. 2011;469(7330):381–384.
  • Chen Q, Whitmer JK, Jiang S, et al. Supracolloidal reaction kinetics of janus spheres. Sciences. 2011;331(6014):199–202.
  • Bianchi E, Largo J, Tartaglia P, et al. Phase diagram of patchy colloids: towards empty liquids. Phys Rev Lett. 2006;97(16):168301.
  • Sciortino F, Zaccarelli E. Reversible gels of patchy particles. Curr Opin Solid State Mater Sci. 2011;15(6):246–253.
  • De Michele C, Tartaglia P, Sciortino F. Slow dynamics in a primitive tetrahedral network model. J Chem Phys. 2006;125(20):204710.
  • Sciortino F, Bianchi E, Douglas JF, et al. Self-assembly of patchy particles into polymer chains: a parameter-free comparison between Wertheim theory and Monte Carlo simulation. J Chem Phys. 2007;126(19):194903.
  • Chen Q, Bae SC, Granick S. Staged self-assembly of colloidal metastructures. J Am Chem Soc. 2012;134(27):11080–11083.
  • Kern N, Frenkel D. Fluid-fluid coexistence in colloidal systems with short-ranged strongly directional attraction. J Chem Phys. 2003;118(21):9882–9889.
  • Leopardi P. Positive weight quadrature on the sphere and monotonicities of Jacobi polynomials. Numer Algorithm. 2007;45(1-4):75–87.
  • Li Y, Zhu YL, Li YC, et al. Self-assembly of two-patch particles in solution: a Brownian dynamics simulation study. Mol Simul. 2014; (40):449–457.
  • Li ZW, Lu ZY, Sun ZY, et al. Model, self-assembly structures, and phase diagram of soft Janus particles. Soft Matter. 2012;8(25):6693–6697.
  • Zhang J, Lu ZY, Sun ZY. Self-assembly of amphiphilic patchy particles with different cross-linking densities. Soft Matter. 2012;8(26):3073–3080.
  • Trung Dac N, Philips CL, Anderson JA, et al. Rigid body constraints realized in massively-parallel molecular dynamics on graphics processing units. Comput Phys Commun. 2011;182(11):2307–2313.
  • Zhu YL, Liu H, Li ZW, et al. GALAMOST: GPU-accelerated large-scale molecular simulation toolkit. J Comput Chem. 2013;34(25):2197–2211.
  • Wang Z, Li B, Jin Q, et al. Simulated annealing study of self-assembly of symmetric ABA triblock copolymers confined in cylindrical nanopores. Macromol Theory Simul. 2008;17(2–3):86–102.
  • Poghosyan AH, Arsenyan LH, Shahinyan AA. Molecular dynamics study of intermediate phase of long chain alkyl sulfonate/water systems. Langmuir. 2013;29(1):29–37.
  • Li ZW, Chen LJ, Zhao Y, et al. Ordered packing of soft discoidal system. J Phys Chem B. 2008;112(44):13842–13848.
  • Zewdie H. Computer simulation studies of liquid crystals: a new corner potential for cylindrically symmetric particles. J Chem Phys. 1998;108(5):2117–2133.

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