Litcius/Paper detail

Controlled-Alignment Patterns of Dipeptide Micro- and Nanofibers

Xingcen Liu, José Danglad‐Flores, Stephan Eickelmann, Bingbing Sun, Jingcheng Hao, Hans Riegler, Junbai Li

2022ACS Nano16 citationsDOIOpen Access PDF

Abstract

Ordered assemblies of the peptide diphenylalanine (FF) are produced and deposited on planar substrates. The FF aggregate growth is achieved through precipitation from aqueous ammonia solutions induced by solvent evaporation. The applied dip-coating technique confines the FF assembly growth to a narrow zone near the three-phase contact. The growth was observed online by optical microscopy and was investigated systematically as a function of the process parameters. Depending on the external gas flow (to influence solvent evaporation), the withdrawal speed, the initial FF, and the initial ammonia concentrations, FF forms long, straight, and rigid microfibers and/or shorter, curved nanofibers. Under certain process conditions, the FF fibers can also aggregate into stripes. These can be deposited as large arrays of uniform stripes with regular widths and spacings. Scenarios leading to the various types of fibers and the stripe formation are presented and discussed in view of the experimental findings.

Topics & Concepts

Materials scienceEvaporationPrecipitationNanofiberMicrofiberAqueous solutionCondensationChemical engineeringDipeptideSolventNanotechnologyAggregate (composite)Composite materialCoatingFiberChemical physicsChemistryPeptideOrganic chemistryThermodynamicsMeteorologyBiochemistryEngineeringPhysicsSupramolecular Self-Assembly in MaterialsChemical Synthesis and AnalysisPhotochromic and Fluorescence Chemistry
Controlled-Alignment Patterns of Dipeptide Micro- and Nanofibers | Litcius