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Peeter Burk

Explore the profile of Peeter Burk including associated specialties, affiliations and a list of published articles. Areas
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Articles 31
Citations 71
Followers 0
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Recent Articles
1.
Tammiku-Taul J, Burk P
J Phys Chem A . 2022 Nov; 126(48):8939-8944. PMID: 36413614
Computational study for three isomeric nitroanilines was carried out to find a nonempirical model to predict their relative ionization efficiencies compared to the corresponding experimental logIE values. The CBS-QB3 method...
2.
Papadiamantis A, Janes J, Voyiatzis E, Sikk L, Burk J, Burk P, et al.
Nanomaterials (Basel) . 2020 Oct; 10(10). PMID: 33066094
A literature curated dataset containing 24 distinct metal oxide (MeO) nanoparticles (NPs), including 15 physicochemical, structural and assay-related descriptors, was enriched with 62 atomistic computational descriptors and exploited to produce...
3.
Mayeux C, Tammiku-Taul J, Massi L, Gal J, Burk P
Chempluschem . 2020 Jan; 78(9):1195-1204. PMID: 31986723
The interaction between the cesium cation and fulvic or humic acids is supposed to play a role in cesium mobility in the environment, which is of importance in the context...
4.
Ustrnul L, Kaabel S, Burankova T, Martonova J, Adamson J, Konrad N, et al.
Chem Commun (Camb) . 2019 Nov; 55(96):14434-14437. PMID: 31737875
Chiral cyclohexanohemicucurbit[n]urils (n = 6, 8) (cycHCs) are able to bind guests through multiple "outer surface interactions", which in the case of planar zinc porphyrins leads to induction of chirality....
5.
Burk J, Sikk L, Burk P, Manshian B, Soenen S, Scott-Fordsmand J, et al.
Nanoscale . 2018 Nov; 10(46):21985-21993. PMID: 30452031
In the search for novel tools to combat cancer, nanoparticles (NPs) have attracted a lot of attention. Recently, the controlled release of cancer-cell-killing metal ions from doped NPs has shown...
6.
Brehm M, Kafka A, Bamler M, Kuhne R, Schuurmann G, Sikk L, et al.
Adv Exp Med Biol . 2017 Feb; 947:257-301. PMID: 28168671
The development and implementation of safe-by-design strategies is key for the safe development of future generations of nanotechnology enabled products. The safety testing of the huge variety of nanomaterials that...
7.
Toomsalu E, Koppel I, Burk P
J Chem Theory Comput . 2015 Nov; 9(9):3947-58. PMID: 26592390
Gas-phase acidities and basicities were calculated for 64 neutral bases (covering the scale from 139.9 kcal/mol to 251.9 kcal/mol) and 53 neutral acids (covering the scale from 299.5 kcal/mol to...
8.
Pillai G, Mederos L, Panda C, Gronski A, Burk P, Hall C, et al.
Med Chem . 2015 Oct; 12(6):513-26. PMID: 26434799
Background: Human immunodeficiency virus type 1 (HIV-1) is the causative agent of AIDS occurs across mucosal surfaces or by direct inoculation. Objective: The objective of this study was to consider...
9.
Toomsalu E, Burk P
J Mol Model . 2015 Aug; 21(9):244. PMID: 26318200
Performance of 18 DFT functionals (B1B95, B3LYP, B3PW91, B97D, BHandHLYP, BMK, CAM-B3LYP, HSEh1PBE, M06-L, mPW1PW91, O3LYP, OLYP, OPBE, PBE1PBE, tHCTHhyb, TPSSh, wB97xD, VSXC) in combinations with six basis sets (cc-pVDZ,...
10.
Pillai G, Sikk L, Tamm T, Karelson M, Burk P, Tamm K
Curr Comput Aided Drug Des . 2014 Dec; 10(4):303-14. PMID: 25479379
Structure-activity relationships in a data set of HPV6-E1 helicase ATPase inhibitors were investigated based on two different sets of descriptors. Statistically significant four parameter Quantitative Structure-Activity Relationships (QSAR) models were...