Nova Patents
EP2231799A2

Hybrid vehicle systems

Abstract

This record has no abstract on file.

Term

Projected expiry 19 December 2028.

  1. Priority
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  3. Published
  4. Today
  5. Projected expiry

1 claim: 1 independent, 0 dependent

  1. 1
    Claims of equivalent WO 2009086193 A2 WHAT IS CLAIMED IS:1 A method of preparing a composition comprising (a) forming an aqueous mixture comprising (i) an organo functional silane, (ii) a metal chloπde, and (ill) an acid, (b) boiling the aqueous mixture, (c) adding a base to the aqueous mixture to substantially neutralize the mixture and to form a hydroxide of the metal, (d) forming a colloidal suspension comprising the metal hydroxide and a siloxy compound, (e) adding a peroxide-based solution to form a suspension comprising a peroxide of the metal, (f) allowing the suspension to equilibrate at room temperature, and (g) boiling the suspension at a pressure greater than atmospheric pressure to form a hybrid film-forming composition comprising the condensation product of a siloxy compound and a metal peroxide 2 The method of claim 1, wherein the pH of the aqueous mixture m (a) and (b) is less than 1 3 The method of claim 1 or 2, wherein the aqueous mixture formed m (a) further comprises an organofunctional silane 4 The method of any of claims 1-3, wherein the composition formed by boiling the suspension further comprises crystalline particles less than about 10 nm in diameter comprising a hybπd metal oxide 5 The method of any of claims 1-4, wherein the film-forming composition compπses the condensation product of a siloxy compound and a transition metal peroxide The method of any of claims 1-5, wherein the organofunctional silane is selected from a group consisting of bis(tπethoxysilyl)methane, l,l,3,3-tetramethyl-l,3- diethoxydisiloxane, and octochlorotnsiloxane, tetraethoxysilane, or any combination thereof The method of any of claims 1-6, , wherein the metal chloπde compπses a chloπde of silicon, titanium, zirconium, tin, vanadium, gallium, germanium, tellurium, hafnium, rhenium, indium, platinum, or any combination of two or more chlorides of silicon, titanium, zirconium, tin, vanadium, gallium, germanium, tellurium, hafnium, rhenium, indium, or platinum The method of any of claims 1-7, further composing applying the hybnd film-forming composition to a substrate and drying the composition to form a coating on the substrate The method of claim 8, wherein the coating is hydrophilic The method of claim 9, wherein a contact angle of water on the coating is less than about 10° A composition prepared according to the process of any of claims 1-7 A coated substrate prepared according to the process of any of claims 8-10 A process for prepanng an article composing (a) providing a composition compnsmg (i) an aqueous earner, and (ii) the condensation product of a siloxy compound and a metal peroxide, (b) applying the composition to a surface of a substrate, and (c) removing the aqueous earner to form an article composing a siloxy-peroxy hybrid metal coating on the surface of the substrate, wherein the coating is hydrophilic or hydrophobic The process of claim 13, wherein the composition further comprises crystalline particles with a diameter less than about 10 run comprising a metal oxide or hybπd metal oxide The process of claim 13 or 14, wherein a thickness of the coating is less than about 10 nm The process of any of claims 13-15, wherein a contact angle of water on the coating is less than about 10° A composition comprising (a) an aqueous earner, and (b) the condensation product of a silicon peroxide and a transition metal peroxide or the condensation product of an organofunctional silane and a transition metal peroxide The composition of claim 17, further compnsmg crystalline particles less than about 10 nm m diameter composing a transition metal oxide or a hybnd metal oxide The composition of claim 17 or 18, further composing silicon oxide and transition metal oxide, wherein the weight percentage of silicon oxide, based on total metal oxide, is at least about 50 wt% The composition of claim 19, wherein the weight percentage of silicon oxide, based on total metal oxide, is at least about 95 wt% or at least about 99 wt% The composition of claim 17 or 18, further compnsmg silicon oxide and transition metal oxide, wherein the weight percentage of transition metal oxide, based on total metal oxide, is at least about 95 wt% The composition of any of claims 17-21 , wherein the condensation product compπses silicon and titanium, silicon and zirconium, titanium and zircomum, or any combination thereof The composition of any of claims 17-22, further compπsing a filler A process for preparing a composition composing (a) providing a first mixture compπsing (i) a silicon peroxide or organofunctional silane, (ii) a transition metal peroxide, and (m) an aqueous carrier, and (b) boiling the first mixture at a pressure greater than atmospheric pressure to form a composition comprising (i) the aqueous earner, and (ii) the condensation product of the silicon peroxide and the transition metal peroxide or the condensation product of the silicon peroxide and the organofunctional silane The process of claim 24, wherein the composition formed by boiling the first mixture at a pressure greater than atmospheric pressure further compπses crystalline particles less than about 10 run in diameter compπsing a transition metal oxide or hybπd metal oxide The process of claim 24 or claim 25, wherein the first mixture is in the form of a colloidal suspension The process of any of claims 24-26, further compπsmg combining (a) an aqueous solution compπsing a peroxide with (b) a colloidal suspension compπsmg an amorphous metal hydroxide and a silicon hydroxide in an aqueous earner to form a colloidal suspension compnsmg the transition metal peroxide and the silicon peroxide The process of any of claims 24-27, further composing (a) combining a silicon chloπde, a transition metal chloπde, and an acid with an aqueous earner to form a second mixture, (b) substantially neutralizing the second mixture, (c) filtering the second mixture to form an amorphous metal hydroxide and a silicon hydroxide, and (d) suspending the amorphous metal hydroxide and silicon hydroxide m an aqueous carrier to form the colloidal suspension compπsing the amorphous metal hydroxide and silicon hydroxide in an aqueous carrier A composition prepared according to the process of any of claims 24-28 A process for preparing an article compnsing (a) providing a composition compπsing (i) an aqueous carrier, and (ii) the condensation product of a silicon peroxide and a transition metal peroxide or a silicon peroxide and an organofunctional silane, (b) applying the composition to a surface of a substrate, and (c) removing the aqueous earner to form an article compnsing a hybnd metal oxide coating on the surface of the substrate The process of claim 30, wherein the composition is prepared according to aprocess compnsing (a) providing a first mixture compnsing (i) a silicon peroxide or an organofunctional silane, (ii) a transition metal peroxide, and (in) an aqueous earner, and (b) boiling the first mixture at a pressure greater than atmosphenc pressure to form a composition compnsing (i) the aqueous earner, and (ii) the condensation product of the silicon peroxide and the transition metal peroxide or the silicon peroxide and the organofunctional silane. 32. The process of claim 30, wherein the composition is prepared according to a process comprising: (a) providing a first mixture comprising: (i) a silicon peroxide or an organofunctional silane;(ii) a transition metal peroxide;and (iii) an aqueous carrier;and (b) boiling the first mixture at a pressure greater than atmospheric pressure to form a composition comprising: (i) the aqueous carrier;and (ii) the condensation product of the silicon peroxide and the transition metal peroxide or the silicon peroxide and the organofunctional silane;and (iii) crystalline nano-sized particles comprising a transition metal oxide. 33. The process of any of claims 30-32, further comprising removing the coating from the substrate to form nano-sized particles in powder form. 34. An article prepared according to the process of any of claims 30-33.