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Nitrilotri(methylphosphonic acid) - ≥95%, high purity , CAS No.6419-19-8

    Grade & Purity:
  • ≥95%
In stock
Item Number
N433216
Grouped product items
SKU Size
Availability
Price Qty
N433216-10g
10g
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
$127.90
N433216-50g
50g
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
$499.90
N433216-250g
250g
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
$1,699.90

Basic Description

Synonyms Tris(phosphonomethyl)amine | ATMP
Specifications & Purity ≥95%
Storage Temp Argon charged
Shipped In Normal
Product Description

Application

Nitrilotri(methylphosphonic acid) is a common chelating agent used in synthetic chemistry. Some of the other applications include: Preparation of hexagonal porous three-dimensional structures encapsulating a template, layered structures with intercalated templates or linear polymers. Synthesis of metal-organic frameworks in combination with uranyl nitrate. Preparation of ingredient of anticorrosive protective coatings on the steel surface. ATMP can also be employed as a scale inhibitor during squeeze treatments in oilfield operations.


Other Notes

Powerful complexing agent

Taxonomic Classification

Taxonomy Tree

Kingdom Organic compounds
Superclass Organic acids and derivatives
Class Organic phosphonic acids and derivatives
Subclass Organic phosphonic acids
Intermediate Tree Nodes Not available
Direct Parent Organic phosphonic acids
Alternative Parents Organopnictogen compounds  Organophosphorus compounds  Organonitrogen compounds  Organic oxides  Hydrocarbon derivatives  
Molecular Framework Aliphatic acyclic compounds
Substituents Organophosphonic acid - Organic nitrogen compound - Organic oxygen compound - Organopnictogen compound - Organic oxide - Hydrocarbon derivative - Organophosphorus compound - Organonitrogen compound - Aliphatic acyclic compound
Description This compound belongs to the class of organic compounds known as organic phosphonic acids. These are organic compounds containing phosphonic acid.
External Descriptors Not available

Associated Targets(non-human)

Nfe2l2 Nuclear factor erythroid 2-related factor 2 (214 Activities)
Activity Type Relation Activity value Units Action Type Journal PubMed Id doi Assay Aladdin ID

Mechanisms of Action

Mechanism of Action Action Type target ID Target Name Target Type Target Organism Binding Site Name References

Names and Identifiers

IUPAC Name [bis(phosphonomethyl)amino]methylphosphonic acid
INCHI InChI=1S/C3H12NO9P3/c5-14(6,7)1-4(2-15(8,9)10)3-16(11,12)13/h1-3H2,(H2,5,6,7)(H2,8,9,10)(H2,11,12,13)
InChIKey YDONNITUKPKTIG-UHFFFAOYSA-N
Smiles C(N(CP(=O)(O)O)CP(=O)(O)O)P(=O)(O)O
Isomeric SMILES C(N(CP(=O)(O)O)CP(=O)(O)O)P(=O)(O)O
WGK Germany 1
RTECS SZ9860000
UN Number 3265
Molecular Weight 299.05
Beilstein 1715724
Reaxy-Rn 1715724
Reaxys-RN_link_address https://www.reaxys.com/reaxys/secured/hopinto.do?context=S&query=IDE.XRN=1715724&ln=

Certificates(CoA,COO,BSE/TSE and Analysis Chart)

C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:

Find and download the COA for your product by matching the lot number on the packaging.

5 results found

Lot Number Certificate Type Date Item
F2406394 Certificate of Analysis Apr 30, 2024 N433216
F2406396 Certificate of Analysis Apr 30, 2024 N433216
F2406404 Certificate of Analysis Apr 30, 2024 N433216
F2406403 Certificate of Analysis Apr 30, 2024 N433216
F2406402 Certificate of Analysis Apr 30, 2024 N433216

Chemical and Physical Properties

Sensitivity Moisture sensitive
Melt Point(°C) 215°C
Molecular Weight 299.050 g/mol
XLogP3 -7.200
Hydrogen Bond Donor Count 6
Hydrogen Bond Acceptor Count 10
Rotatable Bond Count 6
Exact Mass 298.972 Da
Monoisotopic Mass 298.972 Da
Topological Polar Surface Area 176.000 Ų
Heavy Atom Count 16
Formal Charge 0
Complexity 305.000
Isotope Atom Count 0
Defined Atom Stereocenter Count 0
Undefined Atom Stereocenter Count 0
Defined Bond Stereocenter Count 0
Undefined Bond Stereocenter Count 0
The total count of all stereochemical bonds 0
Covalently-Bonded Unit Count 1

Citations of This Product

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2. Yu Wang, Rongkai Wu, Yunyirui Liu, Bihe Yuan.  (2024)  Bio-based chitosan/amino trimethylene phosphonic acid films enabling highly-efficient intumescent flame retardancy and ultra-fast fire early-warning function.  COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS,  684  (133095). 
3. Zhu Yanshaozuo, Shen Xixun, Chen Qian, Xu Qunjie.  (2023)  Preparation and Corrosion Resistance of Silicate Phosphate Composite Passivation Film on Zinc Substrate by Simple Chemical Impregnation Method.  JOM,    (1-17). 
4. Chenhao Ni, Ningyi Chen, Jiahui He, Meilan Pan, Xianhua Wang, Bingjun Pan.  (2023)  Complexation-based selectivity of organic phosphonates adsorption from high-salinity water by neodymium-doped nanocomposite.  WATER RESEARCH,  246  (120705). 
5. Xueyu Tao, Shifang Ye, Kehu Zhu, Liyang Dou, Peixin Cui, Jie Ma, Cheng Zhao, Xianyong Wei, Litong Guo, Akbar Hojjati-Najafabadi, Peizhong Feng.  (2023)  ATMP Doped Conductive PANI/CNTs Composite Hydrogel Electrodes toward High Energy Density Flexible Supercapacitors.  ACS Applied Energy Materials,  (15): (8177–8188). 
6. Xun Wang, Ruiqi Xie, Jie Liu, Yimin Zhu.  (2023)  Selectively separating scheelite from fluorite by using Nitrilotri(methylphosphonic acid) as an efficiency depressant to modify the surface properties of fluorite.  COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS,  674  (131878). 
7. Liangping Xiong, Kai Lyu, Yiyang Zeng, Chuting Yang, Fangting Chi, Sheng Hu, Xinggui Long.  (2023)  Stable and high-flux polyacrylonitrile/hafnium phosphonate nanofibrous membranes for efficient removal of actinides from strong acidic solutions.  Journal of Environmental Chemical Engineering,  11  (109619). 
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9. Xiaopeng Yue, Bingbing Fan, Xing Zhao, Yingying Yang, Shujie Qu, Qiang Zhang, Xin Sun, Peng Cui, Junfeng Ma, Meicheng Li.  (2023)  Energy level modulation of TiO2 using amino trimethylene phosphonic acid for efficient perovskite solar cells with an average VOC of 1.19 V.  Sustainable Energy & Fuels,  (3): (727-734). 
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11. Chaocheng Zeng, Huimin Hu, Chao Wang, Qing Shi, Qiwu Zhang, Mengfei Chen, Qian Wang, Tingting Zhang.  (2023)  New insight into the changes in metal-phosphonate complexes from the addition of CaCO3 to enhance ferric flocculation for efficient phosphonate removal.  CHEMOSPHERE,  311  (137078). 
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13. Quan Fang, Yuanyuan Zhan, Xu Chen, Rongkai Wu, Weijia Zhang, Yu Wang, Xujuan Wu, Yunlong He, Juanjuan Zhou, Bihe Yuan.  (2022)  A bio-based intumescent flame retardant with biomolecules functionalized ammonium polyphosphate enables polylactic acid with excellent flame retardancy.  EUROPEAN POLYMER JOURNAL,  177  (111479). 
14. Kaixiang Cui, Yufei Xia, Linlin Tian, Shuai Wang, Yongyao He.  (2022)  Effect of supercritical CO2 flooding on the produced water quality and performance of the scale inhibitors in a typical tight sandstone oilfield.  PETROLEUM SCIENCE AND TECHNOLOGY,     
15. Yiqiang Liu, Yimei Qiu, Wenlong Jia, Zhiliang Shen, Zheng Li, Jiaren Zhang, Yong Sun, Xing Tang, Xianhai Zeng, Lu Lin.  (2022)  Solvent-mediated Zr-based coordination polymer with tunable acid properties for the dehydration of fructose and catalytic transfer hydrogenation of 5-hydroxymethylfurfural.  Molecular Catalysis,  524  (112253). 
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18. Liang-ping Xiong, Mei Gu, Chu-ting Yang, Kai Lv, Feng-cheng Wu, Sheng Hu, Xing-gui Long.  (2022)  Metal phosphonate sorbents: Enhancement of actinide sorption performance by gamma irradiation.  CHEMICAL ENGINEERING JOURNAL,  430  (132753). 
19. Xu Yue, Liu Lubin, Yan Chentao, Hong Yukai, Xu Miaojun, Qian Lijun, Li Bin.  (2021)  Eco-friendly phosphonic acid piperazine salt toward high-efficiency smoke suppression and flame retardancy for epoxy resins.  JOURNAL OF MATERIALS SCIENCE,  56  (30): (16999-17010). 
20. Xueyu Pang, Lijun Sun, Fang Sun, Ge Zhang, Shenglai Guo, Yuhuan Bu.  (2021)  Cement hydration kinetics study in the temperature range from 15 °C to 95 °C.  CEMENT AND CONCRETE RESEARCH,  148  (106552). 
21. Yongliang Guo, Lili Tian, Jiangming Wu, Yang Wu, Yongmei Liu, Jie Du, Xiaoquan Lu.  (2021)  A Highly Sensitive Electrochemiluminescence Spermine Biosensor Based on Au−Ag Bimetallic Nanoclusters.  ELECTROANALYSIS,  33  (9): (2016-2024). 
22. Wu Zhihui, Shen Chunhui, Gao Shanjun, Zhu Xi, Zhang Mingliang, Ding Ao.  (2021)  Crosslinked Proton Exchange Membranes with a Wider Working Temperature Based on Phosphonic Acid Functionalized Siloxane and PPO.  MACROMOLECULAR RESEARCH,  29  (3): (199-210). 
23. Wei Yu, Wei Chen, Hu Yang.  (2021)  Evaluation of structural effects on the antiscaling performance of various graft cellulose-based antiscalants in RO membrane scaling control.  JOURNAL OF MEMBRANE SCIENCE,  620  (118893). 
24. Jiarui Du, Huiming Lin, Wei Guo, Feng Zhang, Fengyu Qu, Chen Wen, Lei Feng, Xiaoqiang Liang.  (2020)  Phosphonic acid loaded covalent imine networks for proton-conducting membranes.  POLYMER,  201  (122632). 
25. Xi Zhu, Chunhui Shen, Shanjun Gao, Huaiyang Jin, Xiangze Cheng, Chenliang Gong.  (2019)  High-temperature proton exchange membrane with dual proton transfer channels by incorporating phosphonic acid functionalized siloxane into poly(2,6-dimethyl-1,4-phenyleneoxide) (PPO).  SOLID STATE IONICS,  337  (193). 
26. Shuo Huang, Yajuan Feng, Shengnan Li, Yang Zhou, Fengxiu Zhang, Guangxian Zhang.  (2019)  A novel high whiteness flame retardant for cotton.  POLYMER DEGRADATION AND STABILITY,  164  (157). 
27. Lei Hu, Xiaoli Dai, Ning Li, Xing Tang, Yetao Jiang.  (2019)  Highly selective hydrogenation of biomass-derived 5-hydroxymethylfurfural into 2,5-bis(hydroxymethyl)furan over an acid–base bifunctional hafnium-based coordination polymer catalyst.  Sustainable Energy & Fuels,  (4): (1033-1041). 
28. Wei Yu, Di Song, Aimin Li, Hu Yang.  (2019)  Control of gypsum-dominated scaling in reverse osmosis system using carboxymethyl cellulose.  JOURNAL OF MEMBRANE SCIENCE,  577  (20). 
29. Xiangze Cheng, Huaiyang Jin, Chunhui Shen, Shanjun Gao, Jiang Wang, Xi Zhu.  (2018)  Preparation and characterization of proton exchange membrane based on polyphosphoric acid modified by PVDF-HFP.  JOURNAL OF APPLIED POLYMER SCIENCE,  135  (38): (46737). 
30. Liang-ping Xiong, Kai Lv, Mei Gu, Chu-ting Yang, Feng-cheng Wu, Jun Han, Sheng Hu.  (2019)  Efficient capture of actinides from strong acidic solution by hafnium phosphonate frameworks with excellent acid resistance and radiolytic stability.  CHEMICAL ENGINEERING JOURNAL,  355  (159). 
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32. Lei Liu, Zhengzhou Wang.  (2018)  Facile synthesis of a novel magnesium amino-tris-(methylenephosphonate)-reduced graphene oxide hybrid and its high performance in mechanical strength, thermal stability, smoke suppression and flame retardancy in phenolic foam.  JOURNAL OF HAZARDOUS MATERIALS,  357  (89). 
33. Lei Liu, Zhengzhou Wang, Xiaoyan Xu.  (2017)  Melamine amino trimethylene phosphate as a novel flame retardant for rigid polyurethane foams with improved flame retardant, mechanical and thermal properties.  JOURNAL OF APPLIED POLYMER SCIENCE,  134  (39): (45234). 
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