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Max G Schußmann
ORCID
Publication Activity (10 Years)
Years Active: 2024-2024
Publications (10 Years): 7
Top Topics
Mass Spectrometry
Deep Learning
High Resolution
Data Analysis
Top Venues
Macromolecular rapid communications
Nature communications
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This page only lists publications with an associated author ORCID identifier.
Publications
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Max G Schußmann
,
Manfred Wilhelm
,
Valerian Hirschberg
Predicting maximum strain hardening factor in elongational flow of branched pom-pom polymers from polymer architecture.
Nature communications
15 (1) (2024)
Max G Schußmann
,
Lukas Kreutzer
,
Valerian Hirschberg
Fast and Scalable Synthetic Route to Densely Grafted, Branched Polystyrenes and Polydienes via Anionic Polymerization Utilizing P2VP as Branching Point.
Macromolecular rapid communications
45 (8) (2024)
Max G Schußmann
,
Lukas Kreutzer
,
Valerian Hirschberg
Fast and Scalable Synthetic Route to Densely Grafted, Branched Polystyrenes and Polydienes via Anionic Polymerization Utilizing P2VP as Branching Point.
Macromolecular rapid communications
45 (8) (2024)
Max G Schußmann
,
Lukas Kreutzer
,
Valerian Hirschberg
Fast and Scalable Synthetic Route to Densely Grafted, Branched Polystyrenes and Polydienes via Anionic Polymerization Utilizing P2VP as Branching Point.
Macromolecular rapid communications
45 (8) (2024)
Max G Schußmann
,
Lukas Kreutzer
,
Valerian Hirschberg
Fast and Scalable Synthetic Route to Densely Grafted, Branched Polystyrenes and Polydienes via Anionic Polymerization Utilizing P2VP as Branching Point.
Macromolecular rapid communications
(2024)
Max G Schußmann
,
Manfred Wilhelm
,
Valerian Hirschberg
Predicting maximum strain hardening factor in elongational flow of branched pom-pom polymers from polymer architecture.
Nature communications
15 (1) (2024)
Max G Schußmann
,
Lukas Kreutzer
,
Valerian Hirschberg
Fast and Scalable Synthetic Route to Densely Grafted, Branched Polystyrenes and Polydienes via Anionic Polymerization Utilizing P2vp as Branching Point.
Macromolecular rapid communications
(2024)