PARTIALLY FLUORINATED ALCOHOLS AND DERIVATIVES
The present invention is drawn to a compound of formula (1): wherein R f is C 1 to C 6 linear or branched fluoroalkyl, X is F or Cl, and R 1 is H, CH 3 , or CH 2 CH 3 . The compound can be used to form partially fluorinated alcohols, derivatives, and polymers. Thus, the present invention provides compounds having lower fluorine content, the process for making lower fluorine containing compounds, and derivatives made from lower fluorine containing alcohols.
1 . A compound of formula (1):
wherein R f is C 1 to C 6 linear or branched fluoroalkyl, X is F or Cl, and R 1 is H, CH 3 , or CH 2 CH 3 .
2 . The compound of claim 1 wherein R f is C 1 to C 3 linear fluoroalkyl.
3 . A process to prepare a compound of Formula (1) of claim 1
wherein R f is C 1 to C 6 linear or branched fluoroalkyl and X is F or Cl, comprising
a) contacting a alkali metal hydride with a fluorinated alcohol of formula R f CH 2 OH to produce a catalyst, b) contacting a symmetrical fluorinated carbonate of formula (R f CH 2 O) 2 C(O), wherein R f is C 1 to C 6 linear or branched fluoroalkyl, with CF 2 ═CFX, wherein X is F or Cl, in the presence of the catalyst to generate a reaction mixture, c) hydrolyzing the reaction mixture of step b) to form a compound of Formula (1a),
and d) optionally reacting the compound of Formula (1a) with methanol or ethanol to yield a compound of Formula 1.
4 . The process of claim 3 wherein R f is C 1 to C 3 linear fluoroalkyl.
5 . A compound of formula (2):
wherein
R f is C 1 to C 6 linear or branched fluoroalkyl,
X is F or Cl,
Y is O or a single bond,
p is 0 to 1,
m is 0 or 3 to 10, and
n is 0 to 30,
wherein at least one of p or m is a positive integer;
provided that, if n is a positive integer, then p is 1; and
provided that, if m is 0 then Y is a single bond, and if m is a positive integer then
Y is O.
6 . The compound of claim 5 , wherein R f is C 1 to C 3 linear fluoroalkyl.
7 . The compound of claim 5 selected from the formula (2) such that (1) p is 1, m is 0 or 3 to 8, and n is 0; (2) p is 0, m is 3 to 8, and n is 0; or (3) p is 1, m is 0, and n is 1 to 12.
8 . A process to prepare a compound of formula (2) of claim 5 comprising
a) contacting an alkali metal hydride of formula WH g , where W is an alkali metal and g is 1 to 2, with a fluorinated alcohol of formula R f CH 2 OH, wherein R f is C 1 to C 6 linear or branched fluoroalkyl, to produce a catalyst of formula R f CH 2 O − W + ,
b) contacting R f CH 2 OH with (i) formic acid to produce a partially fluorinated formate, (ii) alkyl chloroformate to produce a mixed partially fluorinated carbonate, or (iii) phosgene, diphosgene, or triphosgene to produce a symmetrical partially fluorinated carbonate,
c) contacting the partially fluorinated formate of step (b)(i) or partially fluorinated carbonate of step (b) (ii) or (b) (iii) with CF 2 ═CFX, wherein X is F or Cl, in the presence of the catalyst of formula R f CH 2 O − W + to yield, respectively, a partially fluorinated aldehyde (i), partially fluorinated ester (ii), or partially fluorinated carboxylic acid (iii),
d) contacting the partially fluorinated carboxylic acid of step (c) (iii) with an organic alcohol to form a partially fluorinated ester,
e) contacting (i) the partially fluorinated aldehyde of step (c) (i), (ii) the partially fluorinated ester of step (c) (ii), or (iii) the partially fluorinated ester of step (d) with a reducing agent to form the compound of formula (2a), and
f) optionally contacting the compound of formula (2a) with an alcohol of the formula J(CH 2 ) t OH in the presence of a base, where J is a halogen and t is 3-10, or ethylene oxide in the presence of a catalyst, to form the compound of formula (2).
9 . A process to prepare a compound of formula (2) of claim 5 comprising contacting an alcohol of the formula R f CH 2 OH, wherein R f is C 1 to C 6 linear or branched fluoroalkyl, with an alcohol of formula J(CH 2 ) t OH, where J is a halogen and t is 3-10, in the presence of a base.
10 . The process of claim 9 , wherein the base is chosen from NaH, KOH, NaOH, or Cs 2 CO 3 .
11 . The process of claim 8 or 9 , wherein R f is C 1 to C 3 linear fluoroalkyl.
12 . The process of claim 8 , wherein steps c) and e) are performed as a semi-continuous process where the partially fluorinated aldehyde of step (c) (i) or partially fluorinated ester of step (c) (ii) is not isolated prior to performing step e).
13 . The process of claim 8 , wherein the partially fluorinated formate of step (b) (ii) is formed without the use of organic solvent.
14 . The process of claim 8 , where the alkali metal hydride of step a) is selected from the group consisting of NaH, KH, and CaH 2 ; and the reducing agent of step d) is selected from the group consisting of LiAlH 4 and NaBH 4 .
15 . The process of claim 8 , wherein steps (c) (i), (c) (ii), (e) (i), and (e) (ii) take place at a temperature at or below −20° C.
16 . A compound of Formula (3):
wherein
R f is C 1 to C 6 linear or branched fluoroalkyl,
X is F or Cl,
V is —YC(O)CR 2 ═CH 2 , —YC(O)R 19 SH, or —YC(O)NHCH 2 CH 2 OC(O)CR 2 ═CH 2 ,
Y is O or a single bond,
R 2 is independently selected from H or a C 1 to C 4 alkyl group,
R 19 is an alkylene of about 1 to about 10 carbon atoms,
p is 0 to 1,
m is 0 or 3 to 10, and
n is 0 to 30,
wherein at least one of p or m is a positive integer;
provided that, if n is a positive integer, then p is 1; and
provided that, if m is 0 then Y is a single bond, and if m is a positive integer then
Y is O.
17 . The compound of claim 19 , wherein R f is C 1 to C 3 linear fluoroalkyl.