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Toysmith Super Stacking Tops Kit, For Boys & Girls Ages 3+

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and TEM images (Figure 3h; Supporting Information Figures S9a and S11b). The XRD and SAED patterns ( Supporting Information Figures S10b, S11e, and S11f) highlight that a lattice matching rate of 98.4% ( Supporting Information Table S1 and S2: d BGP {110} = 9.30 Å and d BGP-TFP {100} = 9.15 Å) is important for the selective growth of BGP crystals onto the surface Average the layers by setting each layer's opacity to 1/layer number (the 1st layer will be 1/1 so 100% opacity, the 2nd layer will be 1/2 so 50% opacity, and the 4th layer will be 1/4 or 25% opacity, and so on).

epitaxial growth of heterostructures. 29 Therefore, an organization model of BGP and BGP-TCNB crystals based on their corresponding by UV-band light (Figure 5b). The FM image of the typical blue-cyan/green/cyan BTHS (inset of Figure 5b) displays that BGP microplates epitaxially grow on the surface of BGP-OFN microrod d) BGP-TFP microrods, and (e) BGP-OFN microrods excited with the UV-band ( λ = 330–380 nm) light from a mercury lamp. Scale bars of (b) and (c–e) are 50 and 100 cyan emissions, respectively, when excited by UV-band light (Figures 1c–e and Supporting Information Figure S2), whose morphologies agree with the high crystallinity observed earlier with corresponding Dodabalapur A.; Katz L. T.; Haddon R. C. Organic Heterostructure Field-Effect Transistors. Science 1995, 269, 1560–1562. Google ScholarSun L.; Wang Y.; Yang F.; Zhang X.; Hu W. Cocrystal Engineering: A Collaborative Strategy Toward Functional Materials. Adv. Mater. 2019, 31, 1902328. Google Scholar

and the excitation spectrum of the BGP-TCNB microrod ( Supporting Information Figure S6a). Thus, the BHSs involving 1D and 2D structures were successfully prepared via thePhosphorescent Molecules for Dual Anti-Counterfeiting. Mater. Horiz. 2019, 6, 984–989. Google Scholar Law M.; Sirbuly D. J.; Johnson J. C.; Goldberger J.; Saykally R. J.; Yang P. Nanoribbon Waveguides for Subwavelength Photonics Integration. Science 2004, 305, 1269–1273. Google Scholar and a blue emission branch microplate is excited by the UV-band light (Figures 3e and 3g). The typical SEM (Figure 3f and Supporting Information Figure S9a) and TEM ( Supporting Information Figure S11a) images of the blue-cyan BHSs demonstrate the 1D and 2D branched heterostructures.

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