Korbinian Löbmann

Korbinian Löbmann

Københavns Universitet

H-index: 44

Europe-Denmark

About Korbinian Löbmann

Korbinian Löbmann, With an exceptional h-index of 44 and a recent h-index of 41 (since 2020), a distinguished researcher at Københavns Universitet,

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

Effect of Drug Loading in Mesoporous Silica on Amorphous Stability and Performance

Use of solid thermolytic salts to facilitate microwave-induced in situ amorphization

Exploring the effect of protein secondary structure on the solid state and physical stability of protein-based amorphous solid dispersions

Co-amorphous form of a substance and a protein

Analysis of stabilization mechanisms in β-lactoglobulin-based amorphous solid dispersions by experimental and computational approaches

Investigating the influence of protein secondary structure on the dissolution behavior of SS-lactoglobulin-based amorphous solid dispersions

Enhanced dissolution rate of nimodipine through β-lactoglobulin based formulation

Mechanisms of Drug Solubility Enhancement Induced by β-Lactoglobulin-Based Amorphous Solid Dispersions

Korbinian Löbmann Information

University

Position

Associate Professor

Citations(all)

6553

Citations(since 2020)

4704

Cited By

3933

hIndex(all)

44

hIndex(since 2020)

41

i10Index(all)

97

i10Index(since 2020)

97

Email

University Profile Page

Københavns Universitet

Google Scholar

View Google Scholar Profile

Top articles of Korbinian Löbmann

Title

Journal

Author(s)

Publication Date

Effect of Drug Loading in Mesoporous Silica on Amorphous Stability and Performance

Pharmaceutics

Christoffer G Bavnhøj

Matthias M Knopp

Korbinian Löbmann

2024/1/24

Use of solid thermolytic salts to facilitate microwave-induced in situ amorphization

International Journal of Pharmaceutics

Wei Qiang

Meng Zhang

Korbinian Löbmann

Colin P McCoy

Gavin P Andrews

...

2024/2/15

Exploring the effect of protein secondary structure on the solid state and physical stability of protein-based amorphous solid dispersions

European Journal of Pharmaceutics and Biopharmaceutics

Xuezhi Zhuo

Julia Ochner

Donglei Leng

Vito Foderà

Korbinian Löbmann

2024/5/1

Co-amorphous form of a substance and a protein

2024/1/4

Analysis of stabilization mechanisms in β-lactoglobulin-based amorphous solid dispersions by experimental and computational approaches

European Journal of Pharmaceutical Sciences

Xuezhi Zhuo

Vito Foderà

Per Larsson

Zarah Schaal

Christel AS Bergström

...

2024/1/1

Investigating the influence of protein secondary structure on the dissolution behavior of SS-lactoglobulin-based amorphous solid dispersions

International Journal of Pharmaceutics

Xuezhi Zhuo

Martina Tozzetti

Anis Arnous

Donglei Leng

Vito Foderà

...

2024/2/10

Enhanced dissolution rate of nimodipine through β-lactoglobulin based formulation

International Journal of Pharmaceutics

Donglei Leng

Bulut Bulduk

Johanna Anlahr

Wouter Müllers

Korbinian Löbmann

2023/3/25

Mechanisms of Drug Solubility Enhancement Induced by β-Lactoglobulin-Based Amorphous Solid Dispersions

Molecular Pharmaceutics

Xuezhi Zhuo

Zeyneb Sener

Aleksei Kabedev

Min Zhao

Anis Arnous

...

2023/9/5

Co-amorphous forms of beta-lactoglobulin and a drug substance

2023/1/12

Protein based amorphous solid dispersion: A case study investigating different whey proteins at high drug loading

Pharmaceutical research

Donglei Leng

Bulut Bulduk

Toni Widmer

Ole Wiborg

Manuel Sanchez-Felix

...

2023/7

The effects of surfactants on the performance of polymer-based microwave-induced in situ amorphization

International Journal of Pharmaceutics

Wei Qiang

Korbinian Löbmann

Colin P McCoy

Gavin P Andrews

Min Zhao

2023/1/5

Supersaturated amorphous solid dispersions of celecoxib prepared in situ by microwave irradiation

International Journal of Pharmaceutics

Tobias Palle Holm

Matthias Manne Knopp

Ragna Berthelsen

Korbinian Löbmann

2022/10/15

Stabilizing mechanisms of β-lactoglobulin in amorphous solid dispersions of indomethacin

Molecular Pharmaceutics

Aleksei Kabedev

Xuezhi Zhuo

Donglei Leng

Vito Foderà

Min Zhao

...

2022/9/22

A comparative study between a protein based amorphous formulation and other dissolution rate enhancing approaches: a case study with rifaximin

Pharmaceutics

Xuezhi Zhuo

Maud Margrethe Brekstad Kjellin

Zarah Schaal

Tengyu Zhang

Korbinian Löbmann

...

2022/12/30

Hyperthermia-induced in situ drug amorphization by superparamagnetic nanoparticles in oral dosage forms

ACS Applied Materials & Interfaces

Shaquib Rahman Ansari

Nele-Johanna Hempel

Shno Asad

Peter Svedlindh

Christel AS Bergström

...

2022/4/22

Development of a multiparticulate drug delivery system for in situ amorphisation

European Journal of Pharmaceutics and Biopharmaceutics

Tobias Palle Holm

Marcel Kokott

Matthias Manne Knopp

Ben J Boyd

Ragna Berthelsen

...

2022/11/1

Mechanochemical activated dry amorphisation by milling equilibrium between ap mesoporous silica

2022/11/1

Mechanochemcial activated dry amorphisation by milling equilibrium between AP mesoporous silica

2022/10/25

The use of glycerol as an enabling excipient for microwave-induced in situ drug amorphization

Journal of Pharmaceutical Sciences

Nele-Johanna Hempel

Flemming Morsch

Matthias Manne Knopp

Ragna Berthelsen

Korbinian Löbmann

2021/1/1

Utilizing laser activation of photothermal plasmonic nanoparticles to induce on-demand drug amorphization inside a tablet

Molecular Pharmaceutics

Nele-Johanna Hempel

Padryk Merkl

Shno Asad

Matthias Manne Knopp

Ragna Berthelsen

...

2021/5/5

See List of Professors in Korbinian Löbmann University(Københavns Universitet)

Co-Authors

H-index: 90
Thomas Rades

Thomas Rades

Københavns Universitet

H-index: 70
Anette Mullertz

Anette Mullertz

Københavns Universitet

H-index: 67
Keith C. Gordon

Keith C. Gordon

University of Otago

H-index: 66
Jukka Rantanen, professor PhD

Jukka Rantanen, professor PhD

Københavns Universitet

H-index: 62
Axel Zeitler

Axel Zeitler

University of Cambridge

H-index: 42
Holger Grohganz

Holger Grohganz

Københavns Universitet

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