50972
2,6-吡啶二羧酸 溶液
0.02 M C7H5NO4 in water (0.04N), suitable for ion chromatography, eluent concentrate
别名:
吡啶二羧酸 溶液
描述
anionic
质量水平
浓度
0.02 M C7H5NO4 in water (0.04N)
技术
ion chromatography: suitable
SMILES字符串
OC(=O)c1cccc(n1)C(O)=O
InChI
1S/C7H5NO4/c9-6(10)4-2-1-3-5(8-4)7(11)12/h1-3H,(H,9,10)(H,11,12)
InChI key
WJJMNDUMQPNECX-UHFFFAOYSA-N
一般描述
This eluent concentrate for ion chromatography is determined by potentiometric titration. Content and expiry date can be found on the certificate.
应用
制备说明
由2,6-吡啶二羧酸和高纯水(18.2MΩ, 0.2μm 膜过滤)配制而成
其他说明
Visit the IC Portal to learn more
储存分类代码
10 - Combustible liquids
WGK
WGK 2
闪点(°F)
Not applicable
闪点(°C)
Not applicable
个人防护装备
Eyeshields, Gloves
P Zhang et al.
Journal of applied microbiology, 112(3), 526-536 (2012-01-04)
To analyse the dynamic germination of hundreds of individual superdormant (SD) Bacillus subtilis spores. Germination of hundreds of individual SD B. subtilis spores with various germinants and under different conditions was followed by multifocus Raman microspectroscopy and differential interference contrast
Lingbo Kong et al.
Journal of biomedical optics, 19(1), 011003-011003 (2013-07-12)
The dynamics of bacterial spore germination were successfully observed using a fast Raman imaging system, in combination with real-time phase contrast microscopy. By using a multifocus scan scheme, the spontaneous Raman-scattering imaging acquisition speed was increased to ~30 s per
P R Sajanlal et al.
Nanoscale, 4(11), 3427-3437 (2012-04-27)
We present the synthesis of highly anisotropic nickel nanowires (NWs) and large area, free-standing carpets extending over cm(2) area by simple solution phase chemistry. The materials can be post-synthetically manipulated to produce hybrid tubes, wires, and carpets by galvanic exchange
Bente Aa Lomstein et al.
Nature, 484(7392), 101-104 (2012-03-20)
Two decades of scientific ocean drilling have demonstrated widespread microbial life in deep sub-seafloor sediment, and surprisingly high microbial-cell numbers. Despite the ubiquity of life in the deep biosphere, the large community sizes and the low energy fluxes in this
Hui Xu et al.
Chemical communications (Cambridge, England), 48(59), 7377-7379 (2012-05-26)
A nanoscale MOF material NMOF 1 with controllable morphologies is realized whose morphology control has been simulated based on the BFDH method. The targeted NMOF 1 exhibits highly sensitive, selective and instant "turn-on" sensing of bacterial endospores.
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