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Mihails Arhangelskis

Explore the profile of Mihails Arhangelskis including associated specialties, affiliations and a list of published articles. Areas
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Articles 41
Citations 169
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Recent Articles
1.
Grguric T, Razum M, Martinez V, Zgrablic G, Senkic A, Karadeniz B, et al.
Inorg Chem . 2024 Dec; 63(52):24587-24600. PMID: 39680366
2,5-Dihydroxyterephthalic acid (H) is well-known for its use in the construction of functional metal-organic frameworks (MOFs). Among them, simple coordination polymers (CPs), such as lithium and sodium coordination polymers with...
2.
Arhangelskis M
Two reports on the seventh blind test on crystal structure prediction extensively discuss the cutting-edge avant-garde methods of structure generation and energy ranking.
3.
Baus Topic N, Dash S, Topic E, Arhangelskis M, Cincic D
Cryst Growth Des . 2024 Jun; 24(12):5078-5088. PMID: 38911136
In this study, we examine the experimental and theoretical capabilities of two perhalogenated anilines, 2,3,5,6-tetrafluoro-4-bromoaniline () and 2,3,5,6-tetrafluoro-4-iodoaniline () as hydrogen and halogen bond donors. A series of 11 cocrystals...
4.
Pawledzio S, Ziemniak M, Trzybinski D, Arhangelskis M, Makal A, Wozniak K
RSC Adv . 2024 Feb; 14(8):5340-5350. PMID: 38348299
Applications of 9-aminoacridine (9aa) and its derivatives span fields such as chemistry, biology, and medicine, including anticancer and antimicrobial activities. Protonation of such molecules can alter their bioavailability as weakly...
5.
Vainauskas J, Borchers T, Arhangelskis M, McCormick McPherson L, Spilfogel T, Hamzehpoor E, et al.
Chem Sci . 2023 Nov; 14(45):13031-13041. PMID: 38023516
Carbon, although the central element in organic chemistry, has been traditionally neglected as a target for directional supramolecular interactions. The design of supramolecular structures involving carbon-rich molecules, such as arene...
6.
Julien P, Arhangelskis M, Germann L, Etter M, Dinnebier R, Morris A, et al.
Chem Sci . 2023 Nov; 14(43):12121-12132. PMID: 37969588
In pursuit of accessible and interpretable methods for direct and real-time observation of mechanochemical reactions, we demonstrate a tandem spectroscopic method for monitoring of ball-milling transformations combining fluorescence emission and...
7.
Borchers T, Topic F, Arhangelskis M, Vainauskas J, Titi H, Bushuyev O, et al.
J Am Chem Soc . 2023 Nov; PMID: 37924293
Cocrystallization of a -azobenzene dye with volatile molecules, such as pyrazine and dioxane, leads to materials that exhibit at least three different light-intensity-dependent responses upon irradiation with low-power visible light....
8.
Kumar L, Dash S, Leko K, Trzybinski D, Bregovic N, Cincic D, et al.
Phys Chem Chem Phys . 2023 Oct; 25(42):28576-28580. PMID: 37877228
Discovery of a halogen-bonded ternary cocrystal of 1,3,5-trifluoro-2,4,6-triiodobenzene with pyrazine and triphenylphosphine sulfide has revealed a complex landscape of multicomponent phases, all achievable by mechanochemical interconversion. The observed solid-state reaction...
9.
Leonel G, Lennox C, Xu Y, Arhangelskis M, Friscic T, Navrotsky A
J Phys Chem C Nanomater Interfaces . 2023 Oct; 127(39):19520-19526. PMID: 37817918
We report the first experimental and theoretical evaluation of the thermodynamic driving force for the reaction of metal-organic framework (MOF) materials with carbon dioxide, leading to a metal-organic carbonate phase....
10.
Xu Y, Chodkiewicz M, Woinska M, Trzybinski D, Brekalo I, Topic F, et al.
Chem Commun (Camb) . 2023 Jun; 59(57):8799-8802. PMID: 37357682
The application of Hirshfeld atom refinement (HAR) fragmentation is demonstrated for the refinement of metal-organic framework (MOF) crystal structures. The presented method enables anisotropic refinement of imidazolate hydrogen atoms, as...