Claims
- 1. An instrument for carrying out controlled microwave assisted chemical processes, and that is particularly useful for handling relatively small samples, said instrument comprising:
a microwave-transparent reaction vessel with an open mouth; a pressure-resistant seal on said mouth of said vessel; a needle, portions of which penetrate said seal with a first end of said needle providing fluid communication into said vessel; a pressure transducer at the opposite end of said needle and in fluid communication with the interior of said vessel through said needle; a pressure control flow path from a portion of said needle outside of said vessel to a fluid port, said flow path being in communication with said needle, the interior of said vessel and said transducer; and a controllable pressure release valve for said flow path and associated with said port.
- 2. An instrument according to claim 1 wherein said seal includes a penetrable septum for permitting said needle to be inserted through said seal.
- 3. An instrument according to claim 1 wherein said vessel comprises a material selected from the group consisting of glass, quartz, polymers and combinations thereof.
- 4. An instrument according to claim 1 wherein said pressure resistant seal includes a metal cap.
- 5. An instrument according to claim 1 wherein said needle is formed of metal.
- 6. An instrument according to claim 1 wherein said pressure control flow path includes portions that are coaxial with said needle and portions that are no coaxial with said needle.
- 7. An instrument according to claim 1 and further comprising:
a cavity for receiving said vessel therein; and a source of microwave radiation in communication with said cavity.
- 8. An instrument according to claim 7 and further comprising a microwave attenuator for preventing microwaves in said cavity from propagating beyond said attenuator.
- 9. A method of carrying out microwave-assisted chemical reactions the method comprising:
adding reagents to a microwave-transparent vessel; securing the vessel against pressure release with a seal; thereafter inserting a needle through the seal and into the pressure-secured vessel to provide fluid communication to the interior of the sealed vessel through the needle; irradiating the vessel and its contents with microwaves; and communicating with a fluid between the interior of the sealed vessel and its ambient surroundings without otherwise breaching the seal
- 10. A method according to claim 9 and further comprising removing the needle from the vessel following the step of irradiating the vessel.
- 11. A method according to claim 10 comprising inserting the needle into a second vessel following the step of removing it from the initial vessel.
- 12. A method according to claim 11 comprising irradiating the second vessel with microwaves flowing the step of inserting the needle into the second vessel.
- 13. A method according to claim 9 comprising monitoring the temperature of the vessel or its contents while irradiating the vessel and its contents with microwaves.
- 14. A method according claim 9 comprising monitoring the pressure inside the vessel while irradiating the vessel and its contents with microwaves.
- 15. A method according to claim 13 or 14 comprising moderating the application of microwaves to the vessel and its contents based upon the monitored results.
- 16. A method of carrying out microwave-assisted chemical reactions the method comprising:
adding reagents to a plurality of microwave-transparent vessels; securing each of the vessels against pressure release with a seal; thereafter inserting a needle through the seal of a first of the vessels and into the pressure-secured vessel to provide fluid communication to the interior of the sealed vessel through the needle without permanently breaching the seal; irradiating the vessel and its contents with microwaves while monitoring the pressure inside and temperature of the vessel; moderating the application of microwaves to the vessel in response to the monitored temperature and pressure; communicating with a fluid between the interior of the sealed vessel and its ambient surroundings without otherwise breaching the seal removing the needle from the first vessel following the irradiation and moderating steps and without permanently breaching the seal of the vessel; and repeating the inserting, irradiating, monitoring, moderating, communicating and removing steps for the second and successive vessels of the plurality of vessels.
- 17. A method according to claim 16 comprising adding a different set of reagents to at least the second vessel.
- 18. A method according to claim 16 comprising adding a different set of reagents to each vessel.
- 19. A method according to claim 16 wherein the step of moderating the application of microwaves comprises moderating the microwave power.
- 20. A method according to claim 16 wherein the step of moderating the application of microwaves comprises moderating the duty cycle.
- 21. A method according to claim 16 wherein the step of moderating the application of microwaves comprises physically moderating the transmission of microwaves between a microwave source and the vessel.
- 22. A method according to claim 16 wherein the step of monitoring the temperature comprises optically monitoring the temperature without invading the vessel.
- 23. A method according to claim 16 wherein the step of monitoring the pressure comprises monitoring the pressure with a transducer positioned in a sealed flow path that communicates with the interior of the vessel through the needle.
- 24. An instrument for carrying out controlled microwave assisted chemical processes, and that is particularly useful for handling relatively small samples, said instrument comprising:
a microwave cavity; a vessel assembly including a microwave transparent vessel; a seat in said cavity for receiving said vessel assembly and positioning at least portions of said vessel in said microwave cavity; locking means for locking said vessel assembly in said seat; a valve in fluid communication with said vessel; and a release mechanism for releasing said vessel assembly from said seat.
- 25. An instrument according to claim 24 wherein said locking means comprises a plurality of pistons in said seat that are urged circumferentially inwardly against said assembly when said assembly is seated.
- 26. An instrument according to claim 25 wherein said vessel assembly comprises a shoulder, upper portions of which engage lower portions of said pistons when said vessel assembly is seated in said cavity.
- 27. An instrument according to claim 25 wherein said seat further comprises means for releasing said pistons from said set holes for thereby releasing said vessel assembly from said seat.
- 28. An instrument according to claim 27 wherein said release means comprises:
a channel between said vessel assembly and said seat that communicates with said pistons; and means for sending compressed air thorough said channel to thereby urge said pistons circumferentially outwards and release said vessel assembly from its seated position in said cavity.
- 29. An instrument for carrying out controlled microwave assisted chemical processes, and that is particularly useful for handling relatively small samples, said instrument comprising:
a vessel assembly that includes a sealed vessel; a valve in fluid communication with said vessel; a pressure module assembly that is removably engageable with said vessel assembly and that includes means, when engaged, for measuring the pressure inside of said sealed vessel; and an attenuator assembly for removably receiving said vessel assembly and said pressure assembly in engagement and for positioning portions of said vessel in a microwave cavity and portions of said vessel and vessel assembly outside of said cavity while providing an attenuating barrier to the escape of microwaves from said cavity.
- 30. An instrument according to claim 29 and further comprising a microwave cavity with said attenuator assembly engaged therewith.
- 31. An instrument according to claim 30 and further comprising a microwave source in communication with said cavity for directing microwave radiation into said cavity.
- 32. An instrument according to claim 29 wherein said vessel is a microwave transparent vessel.
- 33. An instrument according to claim 32 wherein said vessel assembly includes a pressure resistant, mechanically-penetrable seal on the mouth of said vessel.
- 34. An instrument according to claim 33 wherein said seal includes a penetrable septum.
- 35. An instrument according to claim 34 wherein said pressure module assembly includes a needle for penetrating said septum and a pressure transducer in sealed communication with said needle for measuring the pressure inside of said vessel as a reaction is proceeding.
- 36. An instrument according to claim 35 wherein said pressure module assembly further comprises a controllable vent port in communication with said needle at a position between said vessel and said transducer.
- 37. An instrument according to claim 35 wherein the relationship between said vessel assembly and said attenuator assembly positions said needle in said vessel in a manner that avoids interference between said needle and microwave transmission in said cavity.
- 38. A pressure relief structure for a microwave instrument and comprising:
a needle; a needle seal adjacent said needle and having a shaft coaxial with said needle and in communication therewith; a pressure transducer opposite said needle seal from said needle and in communication with said shaft; a housing holding said needle to said needle seal and said needle seal to said transducer; a chamber formed between said housing and said needle seal; a lateral shaft through said needle seal from said coaxial shaft to said chamber in said housing; and a valve in communication with said chamber.
- 39. An instrument according to claim 38 wherein said needle is formed of metal.
- 40. An instrument according to claim 38 wherein said needle seal is cylindrical and said housing is cylindrical and surrounds said needle seal.
- 41. An instrument according to claim 40 wherein said chamber is an annulus defined by and between said needle seal and said housing.
- 42. An instrument according to claim 38 wherein said lateral shaft is perpendicular to said coaxial shaft in said needle seal.
- 43. An instrument according to claim 38 wherein said valve is a threaded bleed valve.
- 44. An attenuator assembly for a microwave instrument comprising:
a microwave attenuator; a lock ring on said attenuator for locking said attenuator to a microwave cavity; an annular housing engageable with said lock ring; a plurality of spring-loaded pistons in said housing that are urged inwardly from the inner circumference of said housing towards its center; and means for controllably urging said pistons in a direction outwardly from the inner perimeter of said housing.
- 45. An attenuator assembly according to claim 44 wherein said means for controllably urging said pistons in an outwardly direction comprises:
a channel between said attenuator and said housing and in communication with said pistons; and a source of compressed air in communication with said channel for urging said pistons outwardly when compressed air is supplied to said channel.
- 46. An attenuator assembly according to claim 44 wherein said microwave attenuator is an annular cylinder.
- 47. An attenuator assembly according to claim 44 wherein said locking ring includes a locking flange for attaching said attenuator assembly to a microwave cavity.
- 48. An attenuator assembly according to claim 44 wherein said housing is an annular cylinder and includes three of said pistons spaced equidistantly from one another around the circumference of said housing.
- 49. An attenuator according to claim 44 wherein said means for urging said pistons outwardly comprises:
a circumferential channel between said attenuator and said housing that is in communication with said pistons; and a port in said housing and in fluid communication with said channel so that a fluid fed into said port will exert pressure against said pitons to move them circumferentially outwardly.
Parent Case Info
[0001] The present invention is related to copending and commonly-assigned application Ser. No. 09/773,846 filed Jan. 31, 2001, by Jennings for Microwave-Assisted Chemical Synthesis Instrument With Fixed Tuning, the contents of which are incorporated entirely herein by reference (“the '846 application”).