2020
DOI: 10.1039/c9nh00611g
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Sound-driven dissipative self-assembly of aromatic biomolecules into functional nanoparticles

Abstract: The out-of-equilibrium self-assembly of simple aromatic amino acid molecules is driven by high frequency ultrasound, where acoustic energy acts as a fuel to form uniform supramolecular nanostructures with multifarious optical and biological properties.

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Cited by 37 publications
(56 citation statements)
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“…The alternating arginine-phenylalanine [RF] 4 octapeptide tends to self-assemble and forms β -sheet amyloidal fibrils with different amyloidal analogues [ 28 ] at a concentration of 0.17 wt.%. The transmittance peaks at 1670 cm −1 and 1633 cm −1 shown in Figure S2 indicate the β -sheet secondary structural conformation of the octapeptide.…”
Section: Resultsmentioning
confidence: 99%
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“…The alternating arginine-phenylalanine [RF] 4 octapeptide tends to self-assemble and forms β -sheet amyloidal fibrils with different amyloidal analogues [ 28 ] at a concentration of 0.17 wt.%. The transmittance peaks at 1670 cm −1 and 1633 cm −1 shown in Figure S2 indicate the β -sheet secondary structural conformation of the octapeptide.…”
Section: Resultsmentioning
confidence: 99%
“…The cac of the peptides in millipore water was found to be 1 mM (1.26 mg/mL or 0.126 wt.%) from the plot shown in Figure 1 a. [ 28 ]. When dissolved in water at a concentration of 0.4 mM (below cac ), the [RF] 4 octapeptide exhibited emission peaks at 435, 565, and 620 nm, as shown in Figure 1 b.…”
Section: Resultsmentioning
confidence: 99%
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