Abstract:
There are provided processes for preparing compounds of formula (I) AMPO4. The processes comprise reacting a compound or formula (II) AH 2 PO 4 and a compound of formula (III) MX n , in the presence of an acid scavenger adapted to at least substantially solubilize the compound of formula (II) and the compound of formula (III), at a predetermined temperature, and adapted to be converted into a protic ionic liquid upon protonation. A, M, and X can be various chemical entities and n can be 1 or 2. A process for preparing electrodes is also provided.
Abstract:
There are provided compounds represented by formula (I): in which R 1 is F, CI, -N(R 5 ) 2 or -CN and Q + is selected among various organic cations that include an heterocyle. These compounds are useful as electrolytes, ionic liquids or molten salts.
Abstract:
The present invention relates to the field of sulfonylimides and derivatives thereof Pn particular, it relates to processes for preparing compounds of formula (I) wherein each of the R 1 groups is independently F, Cl, Br or I, and R 2 is H, Li, Na, K or Cs The processes are useful for preparing compounds used in the field of electrochemistry, particularly in the production of lithium batteries and solar cells The present invention also relates to intermediates of the compounds of formula (I)
Abstract:
There are provided compounds of formulas (I) and (II): Various chemical entities can be used for R1 to R6. These compounds comprise at least one polymerizable entity. These compounds can be useful for preparing various polymers. The polymers prepared by using such compounds can be used for preparing proton exchange membranes. For example, compounds (I) and (II) can be polymerized with various monomers including monomers representing their respective unprotonated form.
Abstract:
There is provided a process for preparing compounds of formula M 3 M 1 A 2 . The process comprises reacting a compound of formula M 2 M 1 A 2 with a compound of formula M 3 X 2 , in the presence of at least one coordinating solvent. M 1 can be chosen from B 3+ , Al 3+ , Ga 3+ , In 3+ , Tl 3+ , Fe 3+ , and Au 3+ ; M 2 can be chosen from Li + , Na + , K + , Cs + , (T 1 ) 3 Si-, and N(T 2 ) 4 + ; M 3 can be chosen from Cu + , Ag + , Li + , Na + , K + , Cs + , Rb + , Fr + , Au + , and Hg + ; A can be chosen from S and Se; and X 2 can be chosen from Cl - , Br - , I - , F - , CH 3 COO - , NO 3 - , and CN - . Such compounds can be used for various purposes in the field of electrochemistry.
Abstract translation:提供了一种制备式M 3的化合物的方法。 该方法包括使式M 2 O 1 H 2 A 2 N 2的化合物与式M 3的化合物 在至少一种配位溶剂的存在下进行。 M 1可以选自B 3+,3+,3+,3+,3,..., 3 + SUP>,Tl 3+,Fe 3+和Au 3+。 M 2可以选自Li +,Na +,K +,C + (T 1)3 Si-和N(T 2)4 Si 3,
Abstract:
There is provided compositions comprising a first compound selected from the group consisting of compounds of formulas (I), (III), (V), and (VII), and a second compound selected from the group consisting of compounds of formulas (II), (IV), (VI), and (VIII) (insert formulas (I), (II), (III), (IV), (V), (VI), (VII), and (VIII). Various chemical entities can be used for R 1 to R 10 . These compositions can be particularly useful as anti-static agents or as electron activable precursors to a redox couple.
Abstract:
The present invention relates to the field of sulfonylimides and derivatives thereof Pn particular, it relates to processes for preparing compounds of formula (I) wherein each of the R1 groups is independently F, Cl, Br or I, and R2 is H, Li, Na, K or Cs The processes are useful for preparing compounds used in the field of electrochemistry, particularly in the production of lithium batteries and solar cells The present invention also relates to intermediates of the compounds of formula (I)
Abstract:
There is provided a process for preparing compounds of formula M3M1A2. The process comprises reacting a compound of formula M2M1A2 with a compound of formula M3X2, in the presence of at least one coordinating solvent. M1 can be chosen from B3+, Al3+, Ga3+, In3+, Tl3+, Fe3+, and Au3+; M2 can be chosen from Li+, Na+, K+, Cs+, (T1)3Si-, and N(T2)4+; M3 can be chosen from Cu+, Ag+, Li+, Na+, K+, Cs+, Rb+, Fr+, Au+, and Hg+; A can be chosen from S and Se; and X2 can be chosen from Cl-, Br-, I-, F-, CH3COO-, NO3-, and CN-. Such compounds can be used for various purposes in the field of electrochemistry.
Abstract:
There is provided compositions comprising a first compound selected from the group consisting of compounds of formulas (I), (III), (V), and (VII), and a second compound selected from the group consisting of compounds of formulas (II), (IV), (VI), and (VIII) (insert formulas (I), (II), (III), (IV), (V), (VI), (VII), and (VIII). Various chemical entities can be used for R1 to R10. These compositions can be particularly useful as anti-static agents or as electron activable precursors to a redox couple.