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1969 1
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1986 1
1989 2
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1994 1
1996 2
1997 1
2002 6
2003 4
2005 5
2006 1
2007 5
2008 2
2009 3
2010 5
2011 5
2012 5
2013 7
2014 4
2015 5
2016 1
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2024 3

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110 results

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Page 1
Bacteria-mediated aerobic degradation of hexacosane in vitro conditions.
Jauhari N, Mishra S, Kumari B, Singh SN. Jauhari N, et al. Bioresour Technol. 2014 Oct;170:62-68. doi: 10.1016/j.biortech.2014.07.091. Epub 2014 Aug 1. Bioresour Technol. 2014. PMID: 25125193
In vitro degradation of hexacosane (C26H54), a HMW n-alkane, was studied in MSM by two bacterial strains i.e., Pseudomonas sp. ...An enhancement of 16% in hexacosane degradation by the consortium indicated an additive action of bacterial strains. ...
In vitro degradation of hexacosane (C26H54), a HMW n-alkane, was studied in MSM by two bacterial strains i.e., Pseudomonas sp. ...An …
In vitro antioxidant activity of Oldenlandia herbacea and isolation of 9,9-dimethyl hexacosane and 23-ethyl-cholest-23-en-3beta-ol.
Singaravelu P, Shrishailappa B, Subban R. Singaravelu P, et al. Nat Prod Res. 2008;22(17):1510-5. doi: 10.1080/14786410701852834. Nat Prod Res. 2008. PMID: 19023815
Chemical investigation of the petroleum ether extract yielded a long chain hydrocarbon, 9,9-dimethyl hexacosane (1), and a steroid, 23-ethyl-cholest-23-en-3beta-ol (2)....
Chemical investigation of the petroleum ether extract yielded a long chain hydrocarbon, 9,9-dimethyl hexacosane (1), and a steroid, 2 …
Synthesis of 1,10-dimethylbicyclo[8.8.8]hexacosane and 1,10-dihydroxybicyclo[8.8.8]hexacosane.
Jones IW, Monguchi Y, Dawson A, Carducci MD, Mash EA. Jones IW, et al. Org Lett. 2005 Jul 7;7(14):2841-3. doi: 10.1021/ol050714k. Org Lett. 2005. PMID: 15987150
[structure: see text] 1,10-Dimethylbicyclo[8.8.8]hexacosane (1) and 1,10-dihydroxybicyclo[8.8.8]hexacosane (2) were prepared in 4% yield over seven steps and in 18% yield over three steps, respectively, starting from 1,10-cyclooctadecanedione. ...
[structure: see text] 1,10-Dimethylbicyclo[8.8.8]hexacosane (1) and 1,10-dihydroxybicyclo[8.8.8]hexacosane (2) were prepared i …
Biodegradation and Detoxification of Low-Density Polyethylene (LDPE) by Stenotrophomonas sp. and Alcaligenaceae bacterium.
Mazaheri H, Nazeri S. Mazaheri H, et al. Bull Environ Contam Toxicol. 2023 Dec 24;112(1):19. doi: 10.1007/s00128-023-03836-z. Bull Environ Contam Toxicol. 2023. PMID: 38142453
GC-MS confirmed the presence of the end-product of LDPE degradation (Pentacosane, Hexacosane, and Octadecane). Both, Stenotrophomonas sp. and Alcaligenaceae bacterium had significant detoxification ability. ...
GC-MS confirmed the presence of the end-product of LDPE degradation (Pentacosane, Hexacosane, and Octadecane). Both, Stenotrophomonas …
Radiosynthesis of 1-(2-[18F]Fluoroethyl)-L-Tryptophan using a One-pot, Two-step Protocol.
Yue X, Nikam RM, Kecskemethy HH, Kandula VVR, Falchek SJ, Averill LW, Langhans SA. Yue X, et al. J Vis Exp. 2021 Sep 21;(175). doi: 10.3791/63025. J Vis Exp. 2021. PMID: 34633385
The protocol features a small precursor amount with no more than 0.5 mL of reaction solvent in each step, low loading of potentially toxic 4,7,13,16,21,24-hexaoxa-1,10-diazabicyclo[8.8.8]hexacosane (K222), and an environmentally benign and injectable mobile phase for purif …
The protocol features a small precursor amount with no more than 0.5 mL of reaction solvent in each step, low loading of potentially toxic 4 …
Insight into the formation of bismuth-tungsten carbonyl clusters.
Beuthert K, Peerless B, Dehnen S. Beuthert K, et al. Commun Chem. 2023 Jun 5;6(1):109. doi: 10.1038/s42004-023-00905-6. Commun Chem. 2023. PMID: 37277548 Free PMC article.
Here we show progress in this regard by investigating the reactivity of an intermetallic solid of nominal composition 'K(5)Ga(2)Bi(4)' with [W(cod)(CO)(4)] upon extraction with ethane-1,2-diamine (en) and 4,7,13,16,21,24-hexaoxa-1,10-diazabicyclo[8.8.8]hexacosane (crypt-22 …
Here we show progress in this regard by investigating the reactivity of an intermetallic solid of nominal composition 'K(5)Ga(2)Bi(4)' with …
Adhesion of Rhodococcus bacteria to solid hydrocarbons and enhanced biodegradation of these compounds.
Ivshina IB, Krivoruchko AV, Kuyukina MS, Peshkur TA, Cunningham CJ. Ivshina IB, et al. Sci Rep. 2022 Dec 13;12(1):21559. doi: 10.1038/s41598-022-26173-3. Sci Rep. 2022. PMID: 36513758 Free PMC article.
R. erythropolis IEGM 212 and R. opacus IEGM 262 demonstrated the highest ( 4.3.10(6) CFU/cm(2)) adhesion. The percentage biodegradation of solid hydrocarbons (n-hexacosane and anthracene as model substrates) by Rhodococcus cells was 5 to 60% at a hydrocarbon concentration …
R. erythropolis IEGM 212 and R. opacus IEGM 262 demonstrated the highest ( 4.3.10(6) CFU/cm(2)) adhesion. The percentage biodegradation of s …
110 results