Julia Hollenbach
Leipzig University
8 Papers
69 Citations
Julia Hollenbach is an academic researcher from Leipzig University. The author has contributed to research in topics: Hyperpolarization (physics) & Surface modification. The author has an hindex of 5, co-authored 6 publications.
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Papers
Experimental boundaries of the quantum rotor induced polarization (QRIP) in liquid state NMR
TL;DR: It could be concluded that substances having a high tunneling frequency, which is due to a small and narrow potential barrier, are most likely to feature quantum rotor induced polarization‐enhanced signals.
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Ultrafast Laplace NMR with hyperpolarized xenon gas
TL;DR: In this paper, the authors showed that regardless of the fast diffusion of gas, layer-like spatial encoding is feasible, and an ultrafast diffusion -T2 relaxation correlation experiment reveals significantly different signals of free gas and gas adsorbed in a mesoporous controlled pore glass (CPG).
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Effect of pretreatment temperature on the surface modification of diatomite with trimethylchlorosilane
Allen Puente-Urbina,Allen Puente-Urbina,Julia Hollenbach,Isaac F. Céspedes-Camacho,Isaac F. Céspedes-Camacho,Jörg Matysik,Grettel Valle-Bourrouet +6 more
TL;DR: In this article, diatomite samples from Costa Rica were purified using acidic treatments with hydrochloric acid, thermally treated (400-1000°C) and then silylated with trimethylchlorosilane in toluene under inert atmosphere.
Chapter 9:Probing Exchange and Diffusion in Confined Systems by 129Xe NMR Spectroscopy
Julia Hollenbach,Ben Anger,Jörg Matysik +2 more
- 12 Dec 2016
TL;DR: This chapter provides an overview on the application of 129Xe-MR for probing exchange and dynamics in porous media and discusses the NMR-related features and hardware requirements.
9
Pseudomorphic Transformation of Porous Glasses into Micelle-Templated Silica†
Hans Uhlig,Julia Hollenbach,Matthias Rogaczewski,Jörg Matysik,Felix J. Brieler,Michael Fröba,Dirk Enke +6 more
TL;DR: In this paper, the state of research concerning synthesis, transformation mechanism, characterization, and application of MTS/PG-composites is reviewed and the investigation of the transformation products by 129Xe NMR spectroscopy and the direct synthesis of Al-MCM-41/PG composites are introduced.
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