Martin Koller

About Martin Koller

Martin Koller, With an exceptional h-index of 56 and a recent h-index of 46 (since 2020), a distinguished researcher at Karl-Franzens-Universität Graz, specializes in the field of Biopolymere, Polyhydroxyalkanoate.

His recent articles reflect a diverse array of research interests and contributions to the field:

What Are “Bioplastics”? Defining Renewability, Biosynthesis, Biodegradability, and Biocompatibility

Environmental evaluation of polyhydroxyalkanoates from animal slaughtering waste using material input per service unit

Microbial polyHydroxyAlkanoate (PHA) biopolymers—Intrinsically natural

Definitions and Types of Microbial Biopolyesters and Derived Biomaterials

Biodegradation of plastics

Biosynthesis of versatile PHA copolymers by thermophilic members of the genus Aneurinibacillus

Biotechnological approaches to generate biogenic solvents and energy carriers from renewable resources

Enzyme Immobilization and Its Application Strategies in Food Products

Martin Koller Information

University

Position

Research Manager Senior Researcher

Citations(all)

9581

Citations(since 2020)

6416

Cited By

5436

hIndex(all)

56

hIndex(since 2020)

46

i10Index(all)

110

i10Index(since 2020)

105

Email

University Profile Page

Google Scholar

Martin Koller Skills & Research Interests

Biopolymere

Polyhydroxyalkanoate

Top articles of Martin Koller

What Are “Bioplastics”? Defining Renewability, Biosynthesis, Biodegradability, and Biocompatibility

2023/12/13

Martin Koller
Martin Koller

H-Index: 37

Environmental evaluation of polyhydroxyalkanoates from animal slaughtering waste using material input per service unit

New Biotechnology

2023/7/25

Microbial polyHydroxyAlkanoate (PHA) biopolymers—Intrinsically natural

2023/7/19

Martin Koller
Martin Koller

H-Index: 37

Definitions and Types of Microbial Biopolyesters and Derived Biomaterials

Functional Biomaterials: Design and Development for Biotechnology, Pharmacology, and Biomedicine

2023/4/24

Martin Koller
Martin Koller

H-Index: 37

Biodegradation of plastics

Frontiers in Bioengineering and Biotechnology

2023/4/3

Biosynthesis of versatile PHA copolymers by thermophilic members of the genus Aneurinibacillus

International Journal of Biological Macromolecules

2023/1/15

Petr Sedlacek
Petr Sedlacek

H-Index: 9

Martin Koller
Martin Koller

H-Index: 37

Biotechnological approaches to generate biogenic solvents and energy carriers from renewable resources

The EuroBiotech Journal

2023

Martin Koller
Martin Koller

H-Index: 37

Enzyme Immobilization and Its Application Strategies in Food Products

2022/9/22

Martin Koller
Martin Koller

H-Index: 37

Polyhydroxyalkanoates (PHA): Microbial synthesis of natural polyesters

2022/9/6

Martin Koller
Martin Koller

H-Index: 37

Polyhydroxyalkanoates synthesis by halophiles and thermophiles: towards sustainable production of microbial bioplastics

2022/9/1

Polyhydroxyalkanoates (PHAs)–Production, Properties, and Biodegradation

Biodegradable Polymers in the Circular Plastics Economy

2022/8/15

Martin Koller
Martin Koller

H-Index: 37

Advances in Polyhydroxyalkanoate (PHA) Production, Volume 3

2022/7/19

Martin Koller
Martin Koller

H-Index: 37

Biotechnological production of polyhydroxyalkanoates from glycerol: A review

2022/7/1

Martin Koller
Martin Koller

H-Index: 37

The role of polyhydroxyalkanoates in adaptation of Cupriavidus necator to osmotic pressure and high concentration of copper ions

International Journal of Biological Macromolecules

2022/5/1

Petr Sedlacek
Petr Sedlacek

H-Index: 9

Martin Koller
Martin Koller

H-Index: 37

Combination of hypotonic lysis and application of detergent for isolation of polyhydroxyalkanoates from extremophiles

Polymers

2022/4/26

Petr Sedlacek
Petr Sedlacek

H-Index: 9

Martin Koller
Martin Koller

H-Index: 37

Polyhydroxyalkanoate (PHA) Biopolyesters-emerging and major products of industrial biotechnology

The EuroBiotech Journal

2022/4

Martin Koller
Martin Koller

H-Index: 37

A new wave of industrialization of PHA biopolyesters

2022/2/15

Martin Koller
Martin Koller

H-Index: 37

Polyhydroxyalkanoate (PHA) bio-polyesters–circular materials for sustainable development and growth

2022

Haloarchaea as emerging big players in future polyhydroxyalkanoate bioproduction: Review of trends and perspectives

2022/1/1

Martin Koller
Martin Koller

H-Index: 37

See List of Professors in Martin Koller University(Karl-Franzens-Universität Graz)

Co-Authors

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