Jorg F Loffler
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Explore the profile of Jorg F Loffler including associated specialties, affiliations and a list of published articles.
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40
Citations
610
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Recent Articles
1.
Schawe J, Kwak M, Stoica M, Park E, Loffler J
J Phys Chem Lett
. 2025 Jan;
16(4):948-954.
PMID: 39835401
The behavior of supercooled glass-forming metals depends on the cooperative atomic fluctuations caused by dynamic heterogeneities in the melt. These spatial and temporal heterogeneities form dynamic clusters, which are regions...
2.
Stanko S, Schawe J, Spieckermann F, Eckert J, Loffler J
J Phys Chem Lett
. 2024 Jun;
15(24):6286-6291.
PMID: 38848352
In this study, we combine fast differential scanning calorimetry (FDSC) with synchrotron X-ray measurements to study simultaneously the structure and thermophysical properties of materials. Using the example of the organic...
3.
Raman R, Wen C, Loffler J
Materials (Basel)
. 2023 Jul;
16(14).
PMID: 37512259
Alloys of magnesium, zinc or iron that do not contain toxic elements are attractive as construction material for biodegradable implants, i.e., the type of implants that harmlessly dissolve away within...
4.
The combined effect of zinc and calcium on the biodegradation of ultrahigh-purity magnesium implants
Okutan B, Schwarze U, Berger L, Martinez D, Herber V, Suljevic O, et al.
Biomater Adv
. 2023 Jan;
146:213287.
PMID: 36669235
Magnesium (Mg)-based implants are promising candidates for orthopedic interventions, because of their biocompatibility, good mechanical features, and ability to degrade completely in the body, eliminating the need for an additional...
5.
Sommer N, Hirzberger D, Paar L, Berger L, Cwieka H, Schwarze U, et al.
Acta Biomater
. 2022 Jun;
147:427-438.
PMID: 35644328
Implant removal is unnecessary for biodegradable magnesium (Mg)-based implants and, therefore, the related risk for implant-induced fractures is limited. Aging, on the other hand, is associated with low bone-turnover and...
6.
Firlus A, Stoica M, Michalik S, Schaublin R, Loffler J
Nat Commun
. 2022 Mar;
13(1):1082.
PMID: 35228553
The Invar effect is universally observed in Fe-based bulk metallic glasses. However, there is limited understanding on how this effect manifests at the atomic scale. Here, we use in-situ synchrotron-based...
7.
Liebi M, Lutz-Bueno V, Guizar-Sicairos M, Schonbauer B, Eichler J, Martinelli E, et al.
Acta Biomater
. 2021 Aug;
134:804-817.
PMID: 34333163
The nanostructural adaptation of bone is crucial for its biocompatibility with orthopedic implants. The bone nanostructure also determines its mechanical properties and performance. However, the bone's temporal and spatial nanoadaptation...
8.
Stoica M, Sarac B, Spieckermann F, Wright J, Gammer C, Han J, et al.
ACS Nano
. 2021 Jan;
15(2):2386-2398.
PMID: 33512138
The structure of matter at the nanoscale, in particular that of amorphous metallic alloys, is of vital importance for functionalization. With the availability of synchrotron radiation, it is now possible...
9.
Koulialias D, Schawe J, Loffler J, Gehring A
Phys Chem Chem Phys
. 2020 Dec;
23(2):1165-1171.
PMID: 33350414
In this study, we investigate the kinetics of the enantiotropic solid-solid β-transition in Fe7S8 pyrrhotite, which presents a prominent example of a metal-nonmetal compound with layered crystal structure. The low-temperature...
10.
Pierobon L, Kovacs A, Schaublin R, Gerstl S, Caron J, Wyss U, et al.
Sci Rep
. 2020 Dec;
10(1):21209.
PMID: 33273594
Some of the best-performing high-temperature magnets are Sm-Co-based alloys with a microstructure that comprises an [Formula: see text] matrix and magnetically hard [Formula: see text] cell walls. This generates a...