Ren Wei

About Ren Wei

Ren Wei, With an exceptional h-index of 36 and a recent h-index of 35 (since 2020), a distinguished researcher at Ernst-Moritz-Arndt-Universität Greifswald, specializes in the field of Microbial Biotechnology, Enzyme Biotechnology, Biocatalysis, Protein Engineering.

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

Enzymatic Upcycling of PET Waste to Calcium Terephthalate for Battery Anodes

From Bulk to Binding: Decoding the Entry of PET into Hydrolase Binding Pockets

Identification and characterization of a fungal cutinase-like enzyme CpCut1 from Cladosporium sp. P7 for polyurethane degradation

Exploring new galaxies: Perspectives on the discovery of novel PET-degrading enzymes

Enzymatisches Upcycling von PET‐Abfällen zu Calcium‐Terephthalat für Batterieanoden

Characterization of a PBAT Degradation Carboxylesterase from Thermobacillus composti KWC4

Designer catalytic nanopores meet PET nanoparticles

Synthesis of Modified Poly (vinyl Alcohol) s and Their Degradation Using an Enzymatic Cascade

Ren Wei Information

University

Position

Junior Research Group Leader @

Citations(all)

5518

Citations(since 2020)

5033

Cited By

1671

hIndex(all)

36

hIndex(since 2020)

35

i10Index(all)

55

i10Index(since 2020)

55

Email

University Profile Page

Ernst-Moritz-Arndt-Universität Greifswald

Google Scholar

View Google Scholar Profile

Ren Wei Skills & Research Interests

Microbial Biotechnology

Enzyme Biotechnology

Biocatalysis

Protein Engineering

Top articles of Ren Wei

Title

Journal

Author(s)

Publication Date

Enzymatic Upcycling of PET Waste to Calcium Terephthalate for Battery Anodes

Angewandte Chemie International Edition

Rui Xue

Canhao Qiu

Xiaoli Zhou

Yun Cheng

Zhen Zhang

...

2024/1/2

From Bulk to Binding: Decoding the Entry of PET into Hydrolase Binding Pockets

bioRxiv

Anna Jaeckering

Frederike Goettsch

Moritz Schaeffler

Mark Doerr

Uwe Bornscheuer

...

2024

Identification and characterization of a fungal cutinase-like enzyme CpCut1 from Cladosporium sp. P7 for polyurethane degradation

Applied and Environmental Microbiology

Jiawei Liu

Kaiyuan Xin

Tianyang Zhang

Yuan Wen

Ding Li

...

2024/3/6

Exploring new galaxies: Perspectives on the discovery of novel PET-degrading enzymes

Applied Catalysis B: Environmental

Jan Mican

Jaradat Da'san MM

Weidong Liu

Gert Weber

Stanislav Mazurenko

...

2024/3/1

Enzymatisches Upcycling von PET‐Abfällen zu Calcium‐Terephthalat für Batterieanoden

Angewandte Chemie

Rui Xue

Canhao Qiu

Xiaoli Zhou

Yun Cheng

Zhen Zhang

...

2024/1/2

Characterization of a PBAT Degradation Carboxylesterase from Thermobacillus composti KWC4

Catalysts

Pan Wu

Zhishuai Li

Jian Gao

Yipei Zhao

Hao Wang

...

2023/2/3

Designer catalytic nanopores meet PET nanoparticles

Nature Catalysis

Ren Wei

Uwe T Bornscheuer

2023/12

Synthesis of Modified Poly (vinyl Alcohol) s and Their Degradation Using an Enzymatic Cascade

Angewandte Chemie International Edition

Gerlis von Haugwitz

Kian Donnelly

Mara Di Filippo

Daniel Breite

Max Phippard

...

2023/4/24

Biodegradation of polyester polyurethane by Cladosporium sp. P7: Evaluating its degradation capacity and metabolic pathways

Journal of Hazardous Materials

Jiawei Liu

Qingyi Zeng

Huirui Lei

Kaiyuan Xin

Anming Xu

...

2023/4/15

Feasible Cluster Model Method for Simulating the Redox Potentials of Laccase CueO and Its Variant

Frontiers in Bioengineering and Biotechnology| www. frontiersin. org

Q Jiang

Z Cui

R Wei

K Nie

H Xu

...

2022/7/22

Engineering and evaluation of thermostable IsPETase variants for PET degradation

Engineering in life sciences

Stefan Brott

Lara Pfaff

Josephine Schuricht

Jan‐Niklas Schwarz

Dominique Böttcher

...

2022/3

Performance of PET hydrolases with tethered binding modules in large-scale applications

Chem Catalysis

Ren Wei

Gert Weber

2022/10/20

Mechanism-Based Design of Efficient PET Hydrolases

Ren Wei

Gerlis von Haugwitz

Lara Pfaff

Jan Mican

Christoffel PS Badenhorst

...

2022/2/28

Molecular and biochemical differences of the tandem and cold-adapted PET hydrolases Ple628 and Ple629, isolated from a marine microbial consortium

Frontiers in Bioengineering and Biotechnology

Ingrid E Meyer Cifuentes

Pan Wu

Yipei Zhao

Weidong Liu

Meina Neumann-Schaal

...

2022/7/21

Structural insight and engineering of a plastic degrading hydrolase Ple629

Biochemical and Biophysical Research Communications

Zhishuai Li

Yipei Zhao

Pan Wu

Hao Wang

Qian Li

...

2022/10/20

Rapid depolymerization of poly (ethylene terephthalate) thin films by a dual-enzyme system and its impact on material properties

Chem catalysis

Natalia A Tarazona

Ren Wei

Stefan Brott

Lara Pfaff

Uwe T Bornscheuer

...

2022/12/15

Process analysis of microplastic degradation using activated PMS and Fenton reagents

Chemosphere

Bin Liu

Qixuan Jiang

Zenghui Qiu

Luo Liu

Ren Wei

...

2022/7/1

Biodegradation of polyether-polyurethane foam in yellow mealworms (Tenebrio molitor) and effects on the gut microbiome

Chemosphere

Jiawei Liu

Jingyuan Liu

Bin Xu

Anming Xu

Shixiang Cao

...

2022/10/1

A growth selection system for the directed evolution of amine-forming or converting enzymes

Nature Communications

Shuke Wu

Chao Xiang

Yi Zhou

Mohammad Saiful Hasan Khan

Weidong Liu

...

2022/12/3

Multiple Substrate Binding Mode-Guided Engineering of a Thermophilic PET Hydrolase

ACS catalysis

Lara Pfaff

Jian Gao

Zhishuai Li

Anna Jäckering

Gert Weber

...

2022/7/27

See List of Professors in Ren Wei University(Ernst-Moritz-Arndt-Universität Greifswald)

Co-Authors

H-index: 96
Uwe Bornscheuer

Uwe Bornscheuer

Ernst-Moritz-Arndt-Universität Greifswald

H-index: 76
Luc Avérous

Luc Avérous

Université de Strasbourg

H-index: 69
Jiri Damborsky

Jiri Damborsky

Masarykova univerzita

H-index: 59
Karl Gruber

Karl Gruber

Karl-Franzens-Universität Graz

H-index: 49
Wolfgang Zimmermann

Wolfgang Zimmermann

Universität Leipzig

H-index: 49
Kevin E O'Connor

Kevin E O'Connor

University College Dublin

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