Claims
- 1. A method for preparing cobalt-containing iron oxide magnetic particles, which consists essentially of:
- reducing and dispersing acicular gamma-Fe.sub.2 O.sub.3 particles in an aqueous solution containing a ferrous ssalt, a cobalt salt and an alkali of one equivalent to the cobalt and ferrous salts to raise the ratio of divalent iron to trivalent iron (Fe.sup.2+ /Fe.sup.3+) until the Fe.sup.2+ /Fe.sup.3+ ratio becomes about 0.074 to 0.101; and
- heating the mixture at a temperature higher than room temperature up to a boiling point of the mixture under an atmosphere such that the divalent iron is substantially not oxidized and thereby cobalt is predominantly incorporated into the outermost layer of the acicular iron oxide particles in an amount of 0.2% by weight or more based on the weight of the total metal.
- 2. A method according to claim 1, wherein the ferrous salt is used in an amount of about 0.1 mol or more per one mol of gamma-Fe.sub.2 O.sub.3.
- 3. Cobalt-containing iron oxide magnetic particles prepared by the process of claim 1.
- 4. A method according to claim 1, wherein the reduced gamma-Fe.sub.2 O.sub.3 particles have a Fe.sup.2+ /Fe.sup.3+ ratio of about 0.074.
- 5. A method according to claim 1, wherein the reduced gamma-Fe.sub.2 O.sub.3 particles have a Fe.sup.2+ /Fe.sup.3+ ratio of about 0.101.
- 6. A method for preparing cobalt-containing iron oxide magnetic particles, comprising the steps of:
- reducing and dispersing acicular gamma-Fe.sub.2 O.sub.3 particles having a particle size of 0.1 to 0.5 and an acicular shape having an axis ratio (long axis/short axis) of 5 to 20 in an aqueous solution containing a ferrous salt in an amount of about 0.05 mol or more per one mol of gamma-Fe.sub.2 O.sub.3, acobalt salt and an alkali of at least one equivalent to the cobalt and ferrous salts to raise the ratio of divalent iron to rivalent iron (Fe.sup.2+ /Fe.sup.3+) until the Fe.sup.2+ /Fe.sup.3+ ratio becomes about 0.074 to 0.101; and
- heating the resulting mixture at a temperature up to the boiling point of the mixture under an atmosphere for a period of time of 1.5 fold or more of the time until magnetization reaches a maximum such that the divalent iron is substantially not oxidized and thereby the cobalt is predominantly incorporated into the outermost layer of the acicular iron oxide particles in an amount of 0.5 to 10% by weight or more based on the weight of the total metal atoms and the ferrous atom is contained in the magnetic particles and in an amount of 10% to 20% by weight based on the weight of the total metal atoms contained in the particles.
- 7. Cobalt-containing iron oxide magnetic particles prepared by the process of claim 6.
- 8. A method for preparing cobalt-containing iron oxide magnetic particles consisting essentially of the steps of:
- reducing and dispersing acicular gamma-Fe.sub.2 O.sub.3 particles having a particle size of 0.1 to 0.5 and an acicular shape having an axis ratio (long axis/shor axis) of 5 to 20 in an aqueous solution containing a ferrous salt in an amount of 0.05 mol or more per one mol of gamma-Fe.sub.2 O.sub.3, a cobalt salt and an alkali of at least one equivalent to the cobalt and ferrous salts to raise the ratio of divalent iron to trivalent iron (Fe.sup.2+ /Fe.sup.3+) until the Fe.sup.2+ /Fe.sup.3+ ratio becomes about 0.074 to 0.101; and
- heating the mixture at a temperature up to the boiling point of the mixture under an atmosphere for a period of time of 1.5 fold or more of the time until magnetization reaches a maximum such that the divalent iron is substantially not oxidized and thereby the cobalt is predominantly incorporated into the outermost layer of the acicular iron oxide particles in an amount of 0.5 to 10% by weight or more based on the weight of the total metal atoms and the ferrous atom is contained in the magnetic particles and in an amount of 10% to 20% by weight based on the weight of the total metal atoms contained in the particles.
- 9. The process of claim 8, wherein said reduced particles mixture is heated at a temperature up to the boiling point of the mixture for a period of time of 2 fold or more of the time until magnetization reaches a maximum.
- 10. Cobalt-containing iron oxide magnetic particles prepared by the process of claim 8. metal atoms contained in said particles to thereby obtain cobalt-containing acicular iron oxide magnetic particles having a ratio of divalent iron and trivalent iron (Fe.sup.2+ /Fe.sup.3+) of 0.1 to 0.30;
- filtering the obtained cobalt-containing iron oxide magnetic particles out of said mixture; and
- subjecting the thus obtained cobalt-contining iron oxide particles to oxidation treatment under oxidizing atmosphere at a temperature of 60.degree. to 200.degree. C. until the ratio of Fe.sup.2+ /Fe.sup.3+ lowers from that of the cobalt-containing iron oxide particles in their previous un-oxidized state to about 0.075 to 0.125 thereby increasing the coercive force of the particles.
- 11. A method for preparing cobalt-containing iron oxide magnetic particles comprising the steps of:
- dispersing acicular gamma-Fe.sub.2 O.sub.3 particles having a particle size of 0.1 to 0.5 .mu.m and having an acicular shape which has an axis ratio (long axis/short axis) of 5 to 20 in an aqueous solution which contains a ferrous salt in an amount of about 0.05 mol or more in respect of one mol of gamma-Fe.sub.2 O.sub.3, a cobalt salt and an alkali in an amount of one equivalent or more in respect of the sum of the metal salts;
- heating the resulting mixture of the dispersing step at a temperature higher than room temperature up to the boiling point of the mixture under such a condition that the divalent iron contained in said mixture is substantially not oxidized and in such a manner that a large amount of divalent iron is present in a surface region of the particles and that cobalt is predominantly incorporated into the outermost region of said particles in an amount of 0.5 to 10% by weight or more based on a weight of total metal atoms contained in said particles to thereby obtain cobalt-containing acicular iron oxide magnetic particles having a ratio of divalent iron and trivalent iron (Fe.sup.2+ /Fe.sup.3+) of about 0.074 to 0.101; and
- filtering the obtained cobalt-containing iron oxide magnetic particles out of said mixture.
- 12. Cobalt-containing iron oxide magnetic particles prepared by the process of claim 11.
- 13. A method for preparing cobalt-containing iron oxide magnetic particles according to claim 11, wherein the ferrous atom contained in the magnetic particles in the step of heating is in an amount of 10% to 20% by weight based on the weight of the total metal atoms contained in the particles.
- 14. A method according to claim 1, 6, 8, 11, wherein the starting acicular gamma-Fe.sub.2 O.sub.3 particles have a Fe.sup.2+ /Fe.sup.3+ ratio of less than 0.02.
- 15. Cobalt-containing iron oxide magnetic particles prepared by a process which comprises the steps of:
- reducing acicular gamma-Fe.sub.2 O.sub.3 particles to effect acicular iron oxide particles having a ratio of Fe.sup.2+ /Fe.sup.3+ of about 0.074 to 0.101;
- dispersing the resulting iron oxide particles from the step of reducing into an aqueous solution containing a cobalt salt and an alkali of at least one equivalent to the cobalt salt;
- heating the resulting mixture from the step of dispersing under conditons wherein the divalent iron is substantially not oxidized, whereby cobalt is predominantly incorporated into the outermost layer of the acicular iron oxide particles in an amount of at least 0.2% by weight based on the weight of the total metal atoms contained in the particles; and
- filtering the thus obtained cobalt-containinfg particles from the step of heating out of the mixture.
- 16. A magnetic tape comprising a layer of magnetic composition carried on a plastic substrate film, the magnetic composition comprising a plastic resin, and cobalt-containing iron oxide magnetic particles according to claim 15, said magnetic particles being included in said magnetic composition layer so that the resulting magnetic tape exhibits a surface electrical resistance of 10.sup.8 to 10.sup.9 .OMEGA..multidot.cm and exhibits a print-through effect of 62.0 to 63.0 dB.
- 17. A method of preparing a magnetic tape comprising the steps of coating a magnetic composition on a plastic substrate film, the magnetic composition comprising a plastic resin, a solvent and cobalt-containing iron oxide magnetic particles according to claim 15, said magnetic particles being included so that the magnetic tape exhibits a surface electrical resistance of 10.sup.8 to 10.sup.9 .OMEGA..multidot.cm and exhibits a print-through effect of 62.0 to 63.0 dB.
- 18. Cobalt-containing iron oxide particles according to claim 15 having a coercive force of between 550 and 740 oersteds.
- 19. Cobalt-containing iron oxide particles according to claim 15 having a coercive force of between 610 and 740 oesteds.
- 20. A magnetic tape comprising a layer of magnetic composition carried on a plastic substrate film, the magnetic composition comprising a plastic resin, and cobalt-containing iron oxide magnetic particles according to claim 15, said magnetic particles being included in said magnetic composition layer so that the resulting magnetic tape exhibits a surface electrical resistance of 10.sup.8 to 10.sup.9 .OMEGA..multidot.cm.
- 21. The particles of claim 15, wherein the coercive force of the cobalt-containing particles is increased to between 610 and 740 oersteds.
- 22. Cobalt-containing iron oxide magnetic particles prepared by a process which comprises the steps of:
- reducing acicular gamma-Fe.sub.2 O.sub.3 particles which have an Fe.sup.2+ /Fe.sup.3+ ratio which is almost zero to produce acicular iron oxide particles having a ratio of Fe.sup.2+ /Fe.sup.3+ of about 0.074 to 0.101;
- dispersing the resulting iron oxide particles from the step of reducing into an aqueous solution containing a cobalt salt and an alkali of at least one equivalent to the cobalt salt;
- heating the resulting mixture from the step of dispersing at a temperature up to the boiling point of the mixture and under conditions wherein the divalent iron is substantially not oxidized, whereby cobalt is predominantly incorporated into the outermost layer of the acicular iron oxide particles in an amount of at least 0.2% by weight based on the weight of the total metal atoms contained in the particles; and
- filtering the thus obtained cobalt-containing particles from the step of heating out of the mixture.
Priority Claims (5)
Number |
Date |
Country |
Kind |
52-46046 |
Apr 1977 |
JPX |
|
52-46045 |
Apr 1977 |
JPX |
|
52-46047 |
Apr 1977 |
JPX |
|
52-74993 |
Jun 1977 |
JPX |
|
52-74991 |
Jun 1977 |
JPX |
|
CROSS REFERENCE TO RELATED APPLICATIONS
This application is a Divisional of application Ser. No. 858,575 filed on Apr. 24, 1986 (now U.S. Pat. No. 4,741,921 which issued on May 3, 1988), which is a continuation of Ser. No. 739,765 filed June 3, 1985 (abandoned), which is a continuation of Ser. No. 650,993 filed Sept. 17, 1984 (abandoned), which is a continuation of Ser. No. 427,531 filed Sept. 29, 1982 (abandoned) which is a continuation of Ser. No. 898,127 filed Apr. 20, 1978 (abandoned).
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
3725126 |
Haller et al. |
Apr 1973 |
|
4002804 |
Akashi et al. |
Jan 1977 |
|
4015030 |
Sasazawa et al. |
Mar 1977 |
|
Foreign Referenced Citations (2)
Number |
Date |
Country |
2634414 |
Feb 1977 |
DEX |
1437843 |
Jun 1976 |
GBX |
Divisions (1)
|
Number |
Date |
Country |
Parent |
858575 |
Apr 1986 |
|
Continuations (4)
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Number |
Date |
Country |
Parent |
739765 |
Jun 1985 |
|
Parent |
650993 |
Sep 1984 |
|
Parent |
427531 |
Sep 1982 |
|
Parent |
898127 |
Apr 1978 |
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