Electrode protrusion adjustment for maximizing pressure drop across liquid transport conduit
US-2024096614-A1 · Mar 21, 2024 · US
US2018158664A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2018158664-A1 |
| Application number | US-201715832537-A |
| Country | US |
| Kind code | A1 |
| Filing date | Dec 5, 2017 |
| Priority date | Dec 5, 2016 |
| Publication date | Jun 7, 2018 |
| Grant date | — |
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The present invention provides a mobility electrophoresis separation device, its operating method, and an interface between liquid chromatography and mass spectrometry. The mobility electrophoresis separation device comprises a separation capillary, a syringe pump for injecting a buffer solution, a syringe for injecting a sample solution, and two electrodes disposed apart from each other on either side of the separation capillary. A sample solution is injected by a syringe at a position of the capillary channel, and a buffer solution is injected into the capillary channel upstream the first position, and carries the sample solution to flow downstream. While the mixed liquid flows through the capillary, an electric field is applied in the direction of the flow. Different ions in the sample are thus separated in the flow due to their different velocities traveling in the flow.
Opening claim text (preview).
1 . A mobility electrophoresis separation device, comprising: a separating capillary comprising a first end and a second end, the first end of the separation capillary comprises an electrospray tip and the second end comprising a buffer solution injection end; a syringe pump connected to the buffer solution injection end; a syringe connected to the separation capillary at a position close to the syringe pump; a separation electrode, connected to the syringe pump, or connected to the separation capillary at a position close to the syringe pump; and a ground electrode, connected to the separation capillary at a position close to the electrospray tip. 2 . The mobility electrophoresis separation device according to claim 1 , wherein said mobility electrophoresis separation device further comprises: a first multi-way valve, through which the syringe pump and the syringe are connected to the separation capillary; and a second multi-way valve, through which the ground electrode is connected to the separation capillary. 3 . The mobility electrophoresis separation device according to claim 2 , wherein the separation electrode is connected to the separation electrode through the first multi-way valve. 4 . The mobility electrophoresis separation device according to claim 2 , wherein the mobility electrophoresis separation device further comprises: an auxiliary capillary, connected to the separation capillary through the second multi-way valve. 5 . An interface between liquid chromatography and mass spectrometry, comprising: the mobility electrophoresis separation device according to claim 1 ; and a liquid chromatography apparatus, wherein a sample outlet of the liquid chromatography apparatus is connected to the syringe of the mobility electrophoresis separation device. 6 . A method for controlling the mobility electrophoresis separation device according to claim 1 , characterized by comprising: turning on the syringe pump to inject the buffer solution into the separation capillary at a predetermined flushing pressure; closing the syringe pump after a first time period; using the syringe to inject the sample into the separation capillary at a predetermined injection pressure; stopping the injection of the syringe after a second time period, turning on the syringe pump again to inject the buffer solution into the separation capillary at a predetermined separation pressure, applying separation voltage through the separation electrode, and applying spray voltage to the electrospray tip. 7 . The method for controlling a mobility electrophoresis separation device according to claim 6 , wherein the flushing pressure is in the range of 1 to 1000 mbar, the injection pressure is in the range of 10 to 100 mbar, the separation pressure is in the range of 1 to 200 Mbar, the first time period is in the range of 4 to 6 minutes and the second time period is in the range of 1 to 10 seconds. 8 . A mobility electrophoresis separation method, comprising: creating a flow of a liquid containing different species of ions in a flow channel; and applying an electric field along the flow channel, thereby separating the different species of ions based on their different traveling velocities in the liquid flow under the applied electric field. 9 . The method of claim 8 , wherein creating the flow comprises: injecting a sample solution containing the different species of ions into a first position of the flow channel; introducing a carrier solution upstream of the first position in the flow channel, thereby causing the carrier solution to flow through the first position and carrying the different species of ions in the sample solution downstream from the first position. 10 . The method of claim 9 , wherein introducing the buffer solution is performed at a predetermined pressure. 11 . The method of claim 8 , wherein the flow channel is a capillary channel.
Ion mobility spectrometry · CPC title
Capillaries used for transferring samples or ions (electrospray nozzles H01J49/167) · CPC title
involving proteins, peptides or amino acids {(involving lipoproteins G01N33/92)} · CPC title
Continuous electrophoresis, i.e. the sample being continuously introduced, e.g. free flow electrophoresis [FFE] · CPC title
for multidimensional chromatography · CPC title
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