
Self-assembling metal-organic coordinated fractal crystals
English
Self-assembling metal-organic coordinated fractal crystals
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[1] B.B. Mandelbrot, The Fractal Geometry of Nature, W. H. Freeman, 1982.[1] B.B. Mandelbrot, The Fractal Geometry of Nature, W. H. Freeman, 1982.
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[2] International Union of Crystallography, Report of the Executive Committee for 1991, Acta Crystallogr. A 48(1992) 922-946.[2] International Union of Crystallography, Report of the Executive Committee for 1991, Acta Crystallogr. A 48(1992) 922-946.
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[3] H. Röder, E. Hahn, H. Brune, J.P. Bucher, K. Kern, Building one- and two-dimensional nanostructures by diffusion-controlled aggregation at surfaces, Nature 366(1993) 141-143.[3] H. Röder, E. Hahn, H. Brune, J.P. Bucher, K. Kern, Building one- and two-dimensional nanostructures by diffusion-controlled aggregation at surfaces, Nature 366(1993) 141-143.
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[4] J. Shang, Y. Wang, M. Chen, et al., Assembling molecular Sierpiński triangle fractals, Nat. Chem. 7(2015) 389-393.[4] J. Shang, Y. Wang, M. Chen, et al., Assembling molecular Sierpiński triangle fractals, Nat. Chem. 7(2015) 389-393.
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[5] N. Li, X. Zhang, G.C. Gu, et al., Sierpiński-triangle fractal crystals with the C3v point group, Chin. Chem. Lett. 26(2015) 1198-1202.[5] N. Li, X. Zhang, G.C. Gu, et al., Sierpiński-triangle fractal crystals with the C3v point group, Chin. Chem. Lett. 26(2015) 1198-1202.
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[6] S. Steppanow, N. Lin, D. Payer, et al., Surface assisted assembly of 2D metal organic networks that exhibit unusual threefold coordination symmetry, Angew. Chem. Int. Ed. 46(2007) 710-713.[6] S. Steppanow, N. Lin, D. Payer, et al., Surface assisted assembly of 2D metal organic networks that exhibit unusual threefold coordination symmetry, Angew. Chem. Int. Ed. 46(2007) 710-713.
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