US2014284259A1PendingUtilityA1

Porous inorganic/organic hybrid particles for chromatographic separations and process for its preparation

Assignee: WATERS TECHNOLOGIES CORPPriority: Feb 5, 1999Filed: Jun 3, 2014Published: Sep 25, 2014
Est. expiryFeb 5, 2019(expired)· nominal 20-yr term from priority
B01J 20/28095B01J 20/3204B01J 20/3212Y10T428/256Y10T428/2995G01N 2030/525Y10T428/259B01J 20/288B01J 2220/46Y10T428/2998B01D 15/08B01J 20/321B01J 41/20B01J 20/286Y10T428/249978B01J 20/3242B01J 20/3272B01J 2220/58Y10T428/249979B01J 20/22B01J 20/28083Y10T428/2991Y10T428/2993B01J 20/2808B01J 2220/52B01J 20/3217B01J 20/28042B01J 20/28097B01J 20/28057Y10T428/249953B01J 20/28078Y10T428/2982B01J 2220/54B01J 20/103Y10T428/257Y10T428/249981B01J 20/3282B01J 39/26
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Claims

Abstract

Novel material for chromatographic separations, processes for its preparation, and separations devices containing the chromatographic material. In particular, the disclosure describes porous inorganic/organic hybrid particles having a chromatographically-enhancing pore geometry, which desirably may be surface modified, and that offer more efficient chromatographic separations than that known in the art.

Claims

exact text as granted — not AI-modified
1 - 146 . (canceled) 
     
     
         147 . A porous material comprising an organosiloxane/SiO 2  material having the formula SiO 2 /(R 2   p R 4   q SiO t ) n  or SiO 2 /[R 6 (R 2   r SiO t ) m ] n  wherein R 2  and R 4  are independently C 1 -C 18  aliphatic, styryl, vinyl, propanol, or aromatic moieties, R 6  is a substituted or unsubstituted C 1 -C 18  alkylene, alkenylene, alkynylene or arylene moiety bridging two or more silicon atoms, p and q are 0, 1 or 2, provided that p+q=1 or 2, and that when p+q=1, t=1.5, and when p+q=2, t=1; r is 0 or 1, provided that when r=0, t=1.5, and when r=1, t=1; m is an integer greater than or equal to 2, and n is a number from 0.03 to 1 and wherein all pores of the porous material having a diameter of about <34 Å contribute less than about 110 m 2 /g to the specific surface area of the porous material. 
     
     
         148 . The porous material of  claim 147 , having the formula SiO 2 /(R 2   p R 4   q SiO t ) n  wherein p is 1 and q is 0. 
     
     
         149 . The porous material of  claim 147 , wherein n is 0.2 to 0.5. 
     
     
         150 . The porous material of  claim 147 , having the formula SiO 2 /(R 2   p R 4   q SiO t ) n  wherein R 2  and R 4  are independently lower alkyl. 
     
     
         151 . The porous material of  claim 150 , wherein R 2  is ethyl. 
     
     
         152 . The porous material of  claim 147 , having the formula SiO 2 /[R 6 (R 2   r SiO t ) m ] n . 
     
     
         153 . The porous material of  claim 152 , wherein R 6  is ethylene. 
     
     
         154 . The porous material of  claim 152 , wherein r is 0 and t is 1.5. 
     
     
         155 . The porous material of  claim 152 , wherein m is 2. 
     
     
         156 . The porous material of  claim 147 , having a micropore surface area less than about 110 m 2 /g. 
     
     
         157 . The porous material of  claim 156 , having a micropore surface area less than about 80 m 2 /g. 
     
     
         158 . The porous material of  claim 147 , having a specific surface area of about 50 m 2 /g to about 800 m 2 /g. 
     
     
         159 . The porous material of  claim 158 , having a specific surface area of about 100 m 2 /g to about 353 m 2 /g. 
     
     
         160 . The porous material of  claim 159 , having a specific surface area of about 100 m 2 /g to about 267 m 2 /g. 
     
     
         161 . The porous material of  claim 147 , having an average pore diameter of about 50 Å to about 500 Å. 
     
     
         162 . The porous material of  claim 161 , having an average pore diameter of about 100 Å to about 300 Å. 
     
     
         163 . The porous material of  claim 161 , having an average pore diameter of about 79 Å to about 238 Å. 
     
     
         164 . The porous material of  claim 147 , having a specific pore volume of about 0.25 to 1.5 cm 3 /g. 
     
     
         165 . The porous material of  claim 164 , having a specific pore volume of about 0.76 to 1.0 cm 3 /g. 
     
     
         166 . The porous material of  claim 164 , having a specific pore volume of about 0.40 to 0.76 cm 3 /g. 
     
     
         167 . The porous material of  claim 147 , wherein said material is surface modified by a surface modifier selected from the group consisting of an organic group surface modifier, a silanol group surface modifier, a polymeric coating surface modifier, and combinations thereof. 
     
     
         168 . The porous material of  claim 167 , wherein said material is surface modified with a surface modifier having the formula Z a (R′) b Si—R, where Z═Cl, Br, I, C 1 -C 5  alkoxy, dialkylamino or trifluoromethanesulfonate; a and b are each an integer from 0 to 3 provided that a+b=3; R′ is a C 1 -C 6  straight, cyclic or branched alkyl group, and R is a functionalizing group. 
     
     
         169 . The porous material of  claim 167 , wherein the functionalizing group R is selected from the group consisting of alkenyl, alkynyl, ester, and alkyl or aryl group containing an embedded polar functionality. 
     
     
         170 . The porous material of  claim 167 , wherein said functionalizing group R is a C 1 -C 30  alkyl group. 
     
     
         171 . The porous material of  claim 167 , wherein said surface modifier is selected from the group consisting of octyltrichlorosilane and octadecyltrichlorosilane. 
     
     
         172 . The porous material of  claim 167 , wherein said surface modifier is a combination of an organic group surface modifier and a silanol group surface modifier. 
     
     
         173 . The porous material of  claim 167 , wherein said surface modifier is a combination of an organic group surface modifier and a polymeric coating surface modifier. 
     
     
         174 . The porous material of  claim 167 , wherein said surface modifier is a combination of a silanol group surface modifier and a polymeric coating surface modifier. 
     
     
         175 . The porous material of  claim 167 , wherein said surface is modified via formation of an organic covalent bond between an organic group of the material and a surface modifier. 
     
     
         176 . The porous material of  claim 167 , wherein said surface modifier is a combination of an organic group surface modifier, a silanol group surface modifier, and a polymeric coating surface modifier. 
     
     
         177 . The porous material of  claim 167 , wherein said surface modifier is a silanol group surface modifier. 
     
     
         178 . A particle comprising an organosiloxane/SiO 2  material having the formula SiO 2 /(R 2   p R 4   q SiO t ) n  or SiO 2 /[R 6 (R 2   r SiO t ) m ] n  wherein R 2  and R 4  are independently C 1 -C 18  aliphatic, styryl, vinyl, propanol, or aromatic moieties, R 6  is a substituted or unsubstituted C 1 -C 18  alkylene, alkenylene, alkynylene or arylene moiety bridging two or more silicon atoms, p and q are 0, 1 or 2, provided that p+q=1 or 2, and that when p+q=1, t=1.5, and when p+q=2, t=1; r is 0 or 1, provided that when r=0, t=1.5, and when r=1, t=1; m is an integer greater than or equal to 2, and n is a number from 0.03 to 1; wherein all pores of the particle having a diameter of about <34 Å contribute less than about 110 m 2 /g to the specific surface area of the particle. 
     
     
         179 . The particle of  claim 178 , wherein the particle has a low micropore surface area. 
     
     
         180 . The particle of  claim 179 , wherein all pores of the particle having a diameter of about <34 Å contribute less than about 110 m 2 /g to the specific surface area of the particle. 
     
     
         181 . A separations device having a stationary phase comprising a porous material comprising an organosiloxane/SiO 2  material having the formula SiO 2 /(R 2   p R 4   q SiO t ) n  or SiO 2 /[R 6 (R 2   r SiO t ) m ] n  wherein R 2  and R 4  are independently C 1 -C 18  aliphatic, styryl, vinyl, propanol, or aromatic moieties, R 6  is a substituted or unsubstituted C 1 -C 18  alkylene, alkenylene, alkynylene or arylene moiety bridging two or more silicon atoms, p and q are 0, 1 or 2, provided that p+q=1 or 2, and that when p+q=1, t=1.5, and when p+q=2, t=1; r is 0 or 1, provided that when r=0, t=1.5, and when r=1, t=1; m is an integer greater than or equal to 2, and n is a number from 0.03 to 1 and wherein all pores of the porous material having a diameter of about <34 Å contribute less than about 110 m 2 /g to the specific surface area of the porous material. 
     
     
         182 . A chromatographic column, comprising
 a. a column having a cylindrical interior for accepting a packing material, and   b. a packed chromatographic bed comprising a porous material comprising an organosiloxane/SiO 2  material having the formula SiO 2 /(R 2   p R 4   q SiO t ) n  or SiO 2 /[R 6 (R 2   r SiO t ) m ] n  wherein R 2  and R 4  are independently C 1 -C 18  aliphatic, styryl, vinyl, propanol, or aromatic moieties, R 6  is a substituted or unsubstituted C 1 -C 18  alkylene, alkenylene, alkynylene or arylene moiety bridging two or more silicon atoms, p and q are 0, 1 or 2, provided that p+q=1 or 2, and that when p+q=1, t=1.5, and when p+q=2, t=1; r is 0 or 1, provided that when r=0, t=1.5, and when r=1, t=1; m is an integer greater than or equal to 2, and n is a number from 0.03 to 1 and wherein all pores of the porous material having a diameter of about <34 Å contribute less than about 110 m 2 /g to the specific surface area of the porous material.   
     
     
         183 . The chromatographic column of  claim 182 , wherein said material has been surface modified. 
     
     
         184 . The chromatographic column of  claim 183 , wherein said material has been surface modified by a surface modifier selected from the group consisting of an organic group surface modifier, a silanol group surface modifier, a polymeric coating surface modifier, and combinations thereof. 
     
     
         185 . The chromatographic column of  claim 182 , wherein said surface modifier has the formula Z a (R′) b Si—R, where Z═Cl, Br, I, C 1 -C 5  alkoxy, dialkylamino or trifluoromethanesulfonate; a and b are each an integer from 0 to 3 provided that a+b=3; R′ is a C 1 -C 6  straight, cyclic or branched alkyl group, and R is a functionalizing group.

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