IP Library Granted Patent US 9,791,423
Granted Patent B2
US 9,791,423 · App. 14/632,073 · Granted Oct 17, 2017

Dispensing needle for a fraction collector

Inventors: Theodore Dourdeville (Providence, RI); Joshua A. Burnett (Taunton, MA); James Usowicz (Webster, MA); Marc Lemelin (Douglas, MA); Lucas O. Tiziani (Brighton, MA)
Assignee: WATERS TECHNOLOGIES CORPORATION
G01N30/80B01L3/0241B01L2300/0838B01L2300/165G01N2030/027
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Quick Facts
Patent No.
US 9,791,423
App. No.
14/632,073
Granted
Oct 17, 2017
Kind
B2
Abstract

Described is a dispensing needle for a fraction collector. The dispensing needle includes a conduit having a fluid channel to conduct a chromatographic flow, an interior wall that defines the fluid channel, an exterior surface and an endface through which the chromatographic flow is dispensed. The dispensing needle also includes a coating of a hydrocarbon material or a fluorocarbon material that is bonded to the endface. The coating is also bonded to at least a portion of the exterior surface that is adjacent to the endface and at least a portion of the interior wall that is adjacent to the endface. The coating operates to reduce a droplet volume of a liquid dispensed from the endface that may remain at the tip of the dispensing needle. Consequently, the concentration variation in a collected fraction due to a missing droplet or extra droplet is reduced.

Claims (14)

1. A dispensing needle for a fraction collector, comprising:

a conduit having a first fluid channel having a first cross-sectional area and a dispensing end;

a needle tip disposed at the dispensing end of the conduit and having an exterior surface, an interior wall defining a second fluid channel in fluid communication with the first fluid channel, and an endface disposed at a dispensing end of the second fluid channel, the second fluid channel having a second cross-sectional area that is less than the first cross-sectional area, wherein a flow rate of a liquid through the second fluid channel is greater than a flow rate of the liquid through the first fluid channel; and

a hydrophobic coating of a hydrocarbon material covalently bonded to the endface of the needle tip, to at least a portion of the exterior surface of the needle tip adjacent to the endface and to at least a portion of the interior wall adjacent to the endface, wherein the hydrophobic coating of the hydrocarbon material operates to reduce a droplet volume of the liquid dispensed from the endface.

2. The dispensing needle of claim 1 wherein the coating of a hydrocarbon material is a self assembled monolayer of a hydrocarbon material.

3. The dispensing needle of claim 1 wherein the coating of a hydrocarbon material is bonded by a monopodal attachment.

4. The dispensing needle of claim 1 wherein the hydrocarbon material has a carbon chain length of at least six.

5. The dispensing needle of claim 1 wherein the hydrocarbon material has a carbon chain length that is less than the carbon chain length of a stationary phase in the chromatographic flow.

6. The dispensing needle of claim 1 wherein the conduit is formed of a metal, a ceramic or a glass.

7. The dispensing needle of claim 6 wherein the conduit is formed of one of titanium, titanium alloy or fused silica.

8. The dispensing needle of claim 1 wherein the hydrophobic coating of a hydrocarbon material comprises a bi-layer comprising a first applied layer comprising a first hydrophobic material covalently bonded to the endface, at least the portion of the exterior surface and at least the portion of the interior wall, the bi-layer further comprising a second applied layer disposed on the first applied layer and comprising a second hydrophobic material that is different from the first hydrophobic material.

9. The dispensing needle of claim 8 wherein the second hydrophobic material is more hydrophobic than the first applied layer.

10. The dispensing needle of claim 1 wherein the endface is perpendicular to a longitudinal axis of the second fluid channel.

11. The dispensing needle of claim 1 wherein at least one of the first and second cross-sectional areas is a circular cross-sectional area.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 30, 2015
From: DOURDEVILLE, THEODORE; BURNETT, JOSHUA A.; USOWICZ, JAMES; LEMELIN, MARC; TIZIANI, LUCAS O.
To: WATERS TECHNOLOGIES CORPORATION
Reel/Frame 035539/0760 →
Continuity (3)
Provisional Application 61946202 · Feb 28, 2014
Provisional Application 62086320 · Dec 2, 2014
Related Publication 20150247830A1 · Sep 3, 2015