Interesting facts
              Interesting Facts about 2-[bis(phosphonomethyl)amino]ethyl-(phosphonomethyl)amino]methylphosphonic acid
This fascinating compound is part of a larger class of organophosphorus compounds that have garnered attention for their diverse applications and biological significance. Below are some intriguing aspects of this compound:
- Applications in Agriculture: The unique structure of this compound allows it to function as a herbicide, playing a crucial role in pest control and crop management.
 - Phosphorus Chemistry: This compound contains multiple phosphonic acid groups, which are known for their ability to participate in various chemical reactions and their relevance in biomolecules.
 - Biological Activity: It exhibits promising biological activities, making it a candidate for research in pharmaceuticals, particularly in targeting specific pathways in cellular metabolism.
 - Synthetic Routes: The synthesis involves intricate chemical pathways that highlight sophisticated methodologies in organophosphorus chemistry, reflecting the innovative techniques employed by chemists.
 - Environmentally Significant: Compounds containing phosphonic acids are studied for their breakdown products in the environment, emphasizing the importance of understanding chemical fate and transport.
 
In summary, 2-[bis(phosphonomethyl)amino]ethyl-(phosphonomethyl)amino]methylphosphonic acid stands at the intersection of several critical fields within chemistry, including agricultural science, pharmaceuticals, and environmental science. As researchers delve deeper into its properties and potential uses, this compound may unveil even more exciting opportunities and insights.
Synonyms
          edtmp
          EDTMPA
          Lexidronam
          Ethylenediaminetetra(methylenephosphonic acid)
          V4CP8RSX7V
          EINECS 215-851-5
          BRIQUEST 422-25S
          DTXSID3061689
          (Ethylenedinitrilo)-tetramethylenephosphonic acid
          Ethylenediamine tetra(methylene phosphonic acid)
          Ethylenediamine tetrakis(methylene phosphonic acid)
          PH-540
          EDTPO
          (Ethane-1,2-diylbis(nitrilobis(methylene)))tetrakisphosphonic acid
          Phosphonic acid, (1,2-ethanediylbis(nitrilobis(methylene)))tetrakis-
          Phosphonic acid, (1,2-ethanediylbis(nitrilobis(methylene)))tetrakis-, hexasodium salt
          ETHYLENEDIAMINE-N,N,N',N'-TETRA(METHYLPHOSPHONIC ACID)
          ETHANEDIYLBIS(NITRILOBIS-(METHYLENE)))TETRAKIS-PHOSPHONIC ACID, (1,2-
          Phosphonic acid, [1,2-ethanediylbis[nitrilobis(methylene)]]tetrakis-, hexasodium salt
          Phosphonic acid, P,P',P'',P'''-(1,2-ethanediylbis(nitrilobis(methylene)))tetrakis-
          editempa
          editempa acid
          [ethane-1,2-diylbis[nitrilobis(methylene)]]tetrakisphosphonic acid
          Phosphonic acid, [1,2-ethanediylbis[nitrilobis(methylene)]]tetrakis-
          Phosphonic acid, P,P',P'',P'''-[1,2-ethanediylbis[nitrilobis(methylene)]]tetrakis-
          Dequest 2041
          68Ga-EDTMP
          (68Ga)-EDTMP
          DTXCID9034654
          PH 540
          ethylenediaminetetra(methylenephosphonic)acid
          ethylenediamine tetra methylenephosphonic acid
          ethylenediaminetetramethylenephosphonate, gallium salt
          N,N,N',N' ethylenediamine tetra(methylenephosphonic acid)
          gallium-68 labeled ethylenediamine tetramethylene phosphonate
          (1,2-ethanediylbis(nitrilobis(methylene)))tetrakisphosphonic acid
          (Ethane1,2diylbis(nitrilobis(methylene)))tetrakisphosphonic acid
          Phosphonic acid, (1,2ethanediylbis(nitrilobis(methylene)))tetrakis
          Phosphonic acid, P,P',P'',P'''(1,2ethanediylbis(nitrilobis(methylene)))tetrakis
          1429-50-1
          Ethylenebis(nitrilodimethylene)tetraphosphonic acid
          [2-[bis(phosphonomethyl)amino]ethyl-(phosphonomethyl)amino]methylphosphonic acid
          ((Ethane-1,2-diylbis(azanetriyl))tetrakis(methylene))tetraphosphonic acid
          N,N,N',N'-Ethylenediaminetetrakis(methylenephosphonic Acid)
          61827-49-4
          Ethylenediamine tetrakis(methylene phosphonic acid) hexasodium salt
          Masquol P 430NA
          22036-77-7
          [ethane-1,2-diylbis(nitrilodimethanediyl)]tetrakis(phosphonic acid)
          [1,2-Ethanediylbis[Nitrilobis-(Methylene)]]Tetrakis-Phosphonic Acid
          EINECS 239-204-1
          EINECS 263-254-3
          MFCD00058893
          UNII-V4CP8RSX7V
          SCHEMBL22492
          CHEMBL1208647
          n,n,n',n'-ethylenediaminetetra(methylenephosphonic acid)
          PH540
          N,N,N',N'-Ethylenediaminetetrakis
          Ethylenediaminetetrakis(methylenephosphonic acid) hexasodium salt
          BBL000007
          Ethylene bis(nitrilodimethylene)tetraphosphonic acid, hexasodium salt
          STK368766
          AKOS000365812
          CS-W009667
          FE75418
          HY-W008951
          ethylendiamintetra(methylenphosphonsaure)
          Tetrasodium tetrahydrogen (ethane-1,2-diylbis(nitrilobis(methylene)))tetrakisphosphonate
          AS-15020
          PD062904
          DB-042657
          E0393
          NS00009310
          E75876
          SR-01000944825
          Q3045881
          SR-01000944825-1
          BRD-K54542929-001-01-7
          EDTMP;[1,2-Ethanediylbis(nitrilobis-(methylene))]tetrakis-phosphonic acid
          Hexasodium dihydrogen (ethane-1,2-diylbis(nitrilobis(methylene)))tetrakisphosphonate
          EDTMP ,Ethylenediamine tetrakis(methylene phosphonic acid) ,[2-[bis(phosphonomethyl)amino]ethyl-(phosphonomethyl)amino]methylphosphonic acid
              
Solubility of 2-[bis(phosphonomethyl)amino]ethyl-(phosphonomethyl)amino]methylphosphonic acid
The solubility of the compound 2-[bis(phosphonomethyl)amino]ethyl-(phosphonomethyl)amino]methylphosphonic acid is an interesting topic due to its complex structure containing multiple phosphonic acid groups. The solubility can be influenced by several factors, including:
Furthermore, this compound’s solubility is characterized by its potential to dissociate in solution, releasing protons from its acidic groups, which can facilitate interaction with solvent molecules. It's essential to note that:
Consequently, understanding the solubility characteristics of this compound is crucial for its application in various fields, particularly in pharmaceuticals and agrochemicals, where solubility can dramatically influence bioavailability and activity.