Fotografi av Gueorgui Kostov Gueorguiev

Gueorgui Kostov Gueorguiev

Teoretisk design och experimentell verifiering inom nanostrukturerade och ultratunna material.

Dr. Gueorguiev är projektledare inom teoretisk design och experimentell verifiering inom nanostrukturerade och ultratunna material, samt samordnar forskarnätverket mellan Linköpings universitet och Federal University of Bahia (UFBA) i Brasilien.

För mer information, vänligen se de engelskspråkiga sidorna.

Publikationer

2024

Manoel Alves Machado Filho, William Farmer, Ching-Lien Hsiao, Renato Batista dos Santos, Lars Hultman, Jens Birch, Kumar Ankit, Gueorgui Kostov Gueorguiev (2024) Density Functional Theory-Fed Phase Field Model for Semiconductor Nanostructures: The Case of Self-Induced Core-Shell InAlN Nanorods Crystal Growth & Design (Artikel i tidskrift) Vidare till DOI
Ronaldo Rodrigues Pela, Ching-Lien Hsiao, Lars Hultman, Jens Birch, Gueorgui Kostov Gueorguiev (2024) Electronic and optical properties of core-shell InAlN nanorods: a comparative study via LDA, LDA-1/2, mBJ, HSE06, G0W0 and BSE methods Physical Chemistry, Chemical Physics - PCCP (Artikel i tidskrift) Vidare till DOI
Edward Ferraz de Almeida Jr, Anelia Kakanakova-Gueorguieva, Gueorgui Kostov Gueorguiev (2024) On Decorating a Honeycomb AlN Monolayer with Hydrogen and Fluorine Atoms: Ab Initio and Experimental Aspects Materials, Vol. 17, Artikel 616 (Artikel i tidskrift) Vidare till DOI

2023

Manoel Alves Machado Filho, Ching-Lien Hsiao, Renato Batista dos Santos, Lars Hultman, Jens Birch, Gueorgui Kostov Gueorguiev (2023) Self-Induced Core-Shell InAlN Nanorods: Formation and Stability Unraveled by Ab Initio Simulations ACS Nanoscience Au, Vol. 3, s. 84-93 (Artikel i tidskrift) Vidare till DOI
Samiran Bairagi, Jui-Che Chang, Fu-Gow Tarntair, Wan-Yu Wu, Gueorgui Kostov Gueorguiev, Edward Ferraz de Almeida, Roger Magnusson, Kun-Lin Lin, Shao-Hui Hsu, Jia-Min Shieh, Jens Birch, Ray-Hua Horng, Kenneth Järrendahl, Ching-Lien Hsiao (2023) Formation of quaternary Zn(AlxGa1−x)2O4 epilayers driven by thermally induced interdiffusion between spinel ZnGa2O4 epilayer and Al2O3 substrate Materials Today Advances, Vol. 20, Artikel 100422 (Artikel i tidskrift) Vidare till DOI

Forskning

Organisation