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Martin Presselt

Explore the profile of Martin Presselt including associated specialties, affiliations and a list of published articles. Areas
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Articles 43
Citations 88
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Recent Articles
1.
Jasmin Finkelmeyer S, Presselt M
Chemistry . 2025 Jan; 31(13):e202403500. PMID: 39829246
In applications ranging from photon-energy conversion into electrical or chemical forms (such as photovoltaics or photocatalysis) to numerous sensor technologies based on organic solids, the role of supramolecular structures and...
2.
Jasmin Finkelmeyer S, Mankel C, Ansay G, Elmanova A, Zechel S, Hager M, et al.
J Colloid Interface Sci . 2024 Nov; 680(Pt A):1090-1100. PMID: 39591772
The construction of ultrathin membranes from linearly aligned π-electron systems is advantageous for targeted energy, charge, or mass transfer. The Langmuir-Blodgett (LB) technique enables the creation of such membranes, especially...
3.
Elmanova A, Jahn B, Presselt M
J Phys Chem A . 2024 Nov; 128(46):9917-9926. PMID: 39520375
π-π interactions decisively shape the supramolecular structure and functionality of π-conjugated molecular semiconductor materials. Despite the customizable molecular building blocks, predicting their supramolecular structure remains a challenge. Traditionally, force field...
4.
Askins E, Sarkar A, Navabi P, Kumar K, Jasmin Finkelmeyer S, Presselt M, et al.
J Am Chem Soc . 2024 Aug; 146(32):22360-22373. PMID: 39087647
The immobilization of molecular electrocatalysts on conductive electrodes is an appealing strategy for enhancing their overall activity relative to those of analogous molecular compounds. In this study, we report on...
5.
Andreeva V, Regeni I, Yang T, Elmanova A, Presselt M, Dietzek-Ivansic B, et al.
J Phys Chem Lett . 2024 Jul; 15(29):7430-7435. PMID: 39007727
Triplet-triplet annihilation upconversion is a bimolecular process converting low-energy photons into high-energy photons. Here, we report a calcium-sensing system working via triplet-triplet annihilation (TTA) upconverted emission. The probe itself was...
6.
Smirnova O, Sajzew R, Jasmin Finkelmeyer S, Asadov T, Chattopadhyay S, Wieduwilt T, et al.
Nat Commun . 2024 Jun; 15(1):5079. PMID: 38871703
Hybrid glasses derived from meltable metal-organic frameworks (MOFs) promise to combine the intriguing properties of MOFs with the universal processing ability of glasses. However, the shaping of hybrid glasses in...
7.
Andreeva V, Ehlers H, R C A, Presselt M, van den Broek L, Bonnet S
Commun Chem . 2023 Aug; 6(1):179. PMID: 37644120
Cardiovascular diseases are the leading cause of death worldwide and are not typically diagnosed until the disease has manifested. Endothelial dysfunction is an early, reversible precursor in the irreversible development...
8.
Jasmin Finkelmeyer S, Askins E, Eichhorn J, Ghosh S, Siegmund C, Tauscher E, et al.
Adv Mater . 2023 Aug; 35(40):e2305006. PMID: 37572365
The energies of the frontier molecular orbitals determine the optoelectronic properties in organic films, which are crucial for their application, and strongly depend on the morphology and supramolecular structure. The...
9.
Graewe L, Hupfer M, Schulz M, Mahammed A, Gross Z, Presselt M
Chempluschem . 2023 Jan; 88(3):e202200260. PMID: 36623940
In this work, we assemble amphiphilic iron(III) corroles at air-water interfaces into well-defined quasi-two-dimensional molecular monolayers and theirs stacks for sensing of nitric oxide (NO). For this purpose, we use...
10.
Hupfer M, Dellith J, Seyring M, Diegel M, Dellith A, Ghosh S, et al.
Adv Mater . 2022 Oct; 35(1):e2204874. PMID: 36300596
Layers of aligned dyes are key to photo-driven charge separation in dye sensitized solar cells, but cannot be exploited as rectifying membranes in photocatalysis to separate half-cells because they are...