S5011
Sodium phosphate monobasic
BioPerformance Certified, suitable for cell culture, suitable for insect cell culture, suitable for plant cell culture, ≥99.0% (titration)
동의어(들):
Monosodium dihydrogen orthophosphate, Monosodium phosphate, Sodium dihydrogen phosphate
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모든 사진(4)
About This Item
추천 제품
Grade
BioPerformance Certified
분석
≥99.0% (titration)
형태
powder
기술
cell culture | insect: suitable
cell culture | mammalian: suitable
cell culture | plant: suitable
pH
4.0-4.5 (25 °C, 50 g/L in water)
SMILES string
[Na+].OP(O)([O-])=O
InChI
1S/Na.H3O4P/c;1-5(2,3)4/h;(H3,1,2,3,4)/q+1;/p-1
InChI key
AJPJDKMHJJGVTQ-UHFFFAOYSA-M
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일반 설명
Monosodium phosphate (NaH2PO4), a phosphatizing agent is used on steel surfaces. It is soluble in water.
애플리케이션
Sodium phosphate monobasic has been used:
- in insect cell culture to adjust pH
- as a component in culture medium for pig oocyte maturation and fertilization
- as a resealing solution for electroporation
Storage Class Code
13 - Non Combustible Solids
WGK
WGK 1
Flash Point (°F)
Not applicable
Flash Point (°C)
Not applicable
개인 보호 장비
Eyeshields, Gloves, type N95 (US)
시험 성적서(COA)
제품의 로트/배치 번호를 입력하여 시험 성적서(COA)을 검색하십시오. 로트 및 배치 번호는 제품 라벨에 있는 ‘로트’ 또는 ‘배치’라는 용어 뒤에서 찾을 수 있습니다.
이미 열람한 고객
PHOSPHORUS| Properties and Determination
Encyclopedia of food sciences and nutrition (2003)
Characterization of carrier erythrocytes for biosensing applications
Journal of Biomedical Optics, 22(9), 091510-091510 (2017)
Abundant DNA 6mA methylation during early embryogenesis of zebrafish and pig.
Nature Communications, 7, 13052-13052 (2016)
Nature communications, 7, 13052-13052 (2016-10-08)
DNA N6-methyldeoxyadenosine (6mA) is a well-known prokaryotic DNA modification that has been shown to exist and play epigenetic roles in eukaryotic DNA. Here we report that 6mA accumulates up to ∼0.1-0.2% of total deoxyadenosine during early embryogenesis of vertebrates, but
Nature communications, 11(1), 5550-5550 (2020-11-05)
The capabilities of imaging technologies, fluorescent sensors, and optogenetics tools for cell biology are advancing. In parallel, cellular reprogramming and organoid engineering are expanding the use of human neuronal models in vitro. This creates an increasing need for tissue culture
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