Construction of Highly Ordered Nanomaterials Composed of Protein Containers and Plasmonic Nanoparticles - Marcel Josef Lach - Kirjat - Cuvillier - 9783736972964 - tiistai 27. lokakuuta 2020
Mikäli Kansi ja otsikko eivät täsmää, on otsikko oikein

Construction of Highly Ordered Nanomaterials Composed of Protein Containers and Plasmonic Nanoparticles

Marcel Josef Lach

Hinta
€ 74,49

Tilattu etävarastosta

Arvioitu toimitus ti 30. heinä - pe 9. elo
Lisää iMusic-toivelistallesi

Construction of Highly Ordered Nanomaterials Composed of Protein Containers and Plasmonic Nanoparticles

Nanoparticles with their unique properties are interesting building blocks for the construction of new nanomaterials. By controlling the composition as well as the structure of these nanoparticle-based materials, novel properties can emerge. In this thesis, a new type of protein-based materials was realized by using an innovative design approach with two oppositely charged ferritin protein containers as template for the precise positioning of the nanoparticles. Nanoparticle incorporation inside the protein container cavity was performed by encapsulation of surface functionalized gold nanoparticles with a dis- and reassembly approach or synthesis of metal oxide nanoparticles in situ inside the protein container cavity. The crystallization of oppositely charged protein containers with nanoparticle cargo yielded highly ordered nanoparticle superlattices as free-standing crystals, with up to a few hundred micrometers in size. Structural studies and characterization of optical as well as catalytic properties of the binary crystals were performed. Because the protein scaffold is independent of the nanoparticle cargo, this modular approach will enable tuning of the material properties by choice of nanoparticle content, assembly type and protein container type.

Media Kirjat     Paperback Book   (Kirja pehmeillä kansilla ja liimatulla selällä)
Julkaisupäivämäärä tiistai 27. lokakuuta 2020
ISBN13 9783736972964
Tuottaja Cuvillier
Sivujen määrä 208
Mitta 148 × 210 × 11 mm   ·   254 g
Kieli English