Devices and process for high-pressure magic angle spinning nuclear magnetic resonance
A high-pressure magic angle spinning (MAS) rotor is detailed that includes a high-pressure sample cell that maintains high pressures exceeding 150 bar. The sample cell design minimizes pressure losses due to penetration over an extended period of time.
1. A high pressure loading and reaction device, the loading and reaction device comprising:
a holding member for statically mounting a high-pressure rotor therein, the high-pressure rotor including a high pressure rotor sleeve with a high-pressure sample cell defined therein; and
a rotation member that engages and rotates a sealing valve of the high-pressure sample cell within the rotor sleeve, providing sealing or opening of the sealing valve in-situ while the high-pressure rotor remains statically positioned in said device.
2. The high pressure loading and reaction device of claim 1 , wherein the rotation member is a high-pressure thrust bearing.
3. The high pressure loading and reaction device of claim 1 , further including at least one fluid port operatively coupled for introducing one or more fluids independently into the sample cell within the high pressure rotor in-situ.
4. A method for sealing a high-pressure sample cell within a high-pressure rotor in-situ, comprising the steps of:
introducing a quantity of sample within the high-pressure sample cell defined within a high-pressure rotor sleeve of said high-pressure rotor in-situ positioned within a high-pressure loading and reaction device, the high-pressure sample cell spans the entire inner diameter of the rotor sleeve of said high-pressure rotor; and
sealing said sample within said high-pressure sample cell of said high-pressure rotor positioned within said high-pressure loading and reaction device at said pressure with a high-pressure sealing valve operatively coupled to said sample cell by turning same with a high-pressure thrust bearing, thereby sealing said valve.
5. The method of claim 4 , wherein sealing includes a pressure within the high-pressure sample cell greater than 1 bar.
6. The method of claim 4 , wherein introducing the sample includes opening the sealing valve of the high-pressure sample cell within the high-pressure rotor within said high-pressure loading and reaction device to recharge contents within the sample cell in-situ.
7. The method of claim 4 , further including the step of analyzing said sample present within said sample cell at said high pressure for a preselected time by introducing said high-pressure rotor containing said sample into an NMR probe.