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1.
Chemphyschem ; 24(20): e202300670, 2023 Oct 17.
Article in English | MEDLINE | ID: mdl-37876344

ABSTRACT

The front cover artwork is provided by Hang Liu from Prof. Dr. Joachim Albrecht's and Prof. Dr. Katharina Weber's group at Aalen University. The image depicts the wetting properties of a biopolymer foil. Surface microstructuring allows the tailoring of physical chemical properties that can lead to biodegradable packaging foils. Read the full text of the Research Article at 10.1002/cphc.202300301.

2.
Chemphyschem ; 24(20): e202300301, 2023 Oct 17.
Article in English | MEDLINE | ID: mdl-37466122

ABSTRACT

The surface topography of biodegradable polymer foils is modified by mechanical imprinting on a submillimeter length scale. The created patterns strongly influence the wetting behavior and allow the preparation of hydrophobic surfaces with controlled solid-liquid interaction. A detailed analysis of anisotropic surface patterns reveals that the observed effect arises from a combination of topographical and compositional changes that are introduced to the surface. As a main result it is found that an individual combination of material and structure is required for the production of water-repellent biopolymer foils that are highly attractive for packaging applications.

3.
Pharmaceutics ; 14(11)2022 Nov 04.
Article in English | MEDLINE | ID: mdl-36365199

ABSTRACT

The insect repellent ethyl butylacetylaminopropionate (IR3535) was used as a functional additive for poly (l-lactic acid) (PLLA) to modify its structure and mechanical properties and achieve insect repellency. PLLA/IR3535 mixtures at various compositions were prepared via melt extrusion. In the analyzed composition range of 0 to 23 m% IR3535, PLLA and IR3535 were miscible at the length scale represented by the glass transition temperature. Addition of IR3535 resulted in a significant decrease in the glass transition temperature of PLLA, as well as in the elastic modulus, indicating its efficiency as a plasticizer. All mixtures were amorphous after extrusion, though PLLA/IR3535 extrudates with an IR3535 content between 18 and 23 m% crystallized during long-term storage at ambient temperature, due to their low glass transition temperature. Quantification of the release of IR3535 into the environment by thermogravimetric analysis at different temperatures between 50 and 100 °C allowed the estimation of the evaporation rate at lower temperatures, suggesting an extremely low release rate with a time constant of the order of magnitude of 1-2 years at body temperature.

4.
Polymers (Basel) ; 13(7)2021 Apr 01.
Article in English | MEDLINE | ID: mdl-33915955

ABSTRACT

Increasing interest in bio-based polymers and fibers has led to the development of several alternatives to conventional plastics and fibers made of these materials. Biopolymer fibers can be made from renewable, environmentally friendly resources and can be fully biodegradable. Biogenic resources with a high content of carbohydrates such as starch-containing plants have huge potentials to substitute conventional synthetic plastics in a number of applications. Much literature is available on the production and modification of starch-based fibers and blends of starch with other polymers. Chemistry and structure-property relationships of starch show that it can be used as an attractive source of raw material which can be exploited for conversion into a number of high-value bio-based products. In this review, possible spinning techniques for the development of virgin starch or starch/polymer blend fibers and their products are discussed. Beneficiation of starch for the development of bio-based fibers can result in the sustainable replacement of oil-based high-value materials with cost-effective, environmentally friendly, and abundant products.

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