A58003
2-Amino-4-hydroxy-6-methylpyrimidine
98%
Synonym(s):
2-Amino-6-methyl-4-pyrimidinol, 6-Methylisocytosine
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About This Item
Recommended Products
Quality Level
Assay
98%
form
powder
mp
>300 °C (lit.)
SMILES string
Cc1cc(O)nc(N)n1
InChI
1S/C5H7N3O/c1-3-2-4(9)8-5(6)7-3/h2H,1H3,(H3,6,7,8,9)
InChI key
KWXIPEYKZKIAKR-UHFFFAOYSA-N
Storage Class Code
11 - Combustible Solids
WGK
WGK 3
Flash Point(F)
Not applicable
Flash Point(C)
Not applicable
Personal Protective Equipment
dust mask type N95 (US), Eyeshields, Gloves
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Nanoscale, 11(2), 467-473 (2018-12-20)
Supramolecular polymers show unique and excellent properties due to the reversible and designable nature of the non-covalent interactions. Herein, ureido-pyrimidinone (UPy)-based supramolecular polymers were employed to fabricate the thermo-responsive composite materials with multi-walled carbon nanotubes (MWCNTs) by planting the MWCNTs
Scientific reports, 7(1), 4931-4931 (2017-07-12)
Most synthetic processes of metallic nanostructures were assisted by organic/inorganic or polymeric materials to control their shapes to one-dimension or two-dimension. However, these additives have to be removed after synthesis of metal nanostructures for applications. Here we report a straightforward
PLoS pathogens, 6(4), e1000865-e1000865 (2010-04-28)
Riboswitches are regulatory elements modulating gene expression in response to specific metabolite binding. It has been recently reported that riboswitch agonists may exhibit antimicrobial properties by binding to the riboswitch domain. Guanine riboswitches are involved in the regulation of transport
Biomaterials science, 7(4), 1286-1298 (2019-03-14)
A supramolecular hybrid hydrogel displaying a wide array of dynamic physical properties along with enhanced in vivo stem cell retention has been developed. The key strategy is facilely polymerizing bioactive gelatin methacrylate (GelMA) with 2-(2-methoxyethoxy)ethyl methacrylate (MEO2MA) and 2-(3-(6-methyl-4-oxo-1,4-dihydropyrimidin-2-yl)ureido)ethyl methacrylate
Talanta, 224, 121905-121905 (2021-01-01)
In developing countries, people mainly depend on rice as their primary source of calories. However, the thiamine content of rice is below minimal requirements. Biofortification, via genetic engineering, is a cost-effective strategy to increase thiamine content in rice. We report
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