Reducing background fluorescence in MEMS materials by low energy ion beam treatment
Methods for fabricating materials useful for optical detection in microfluidic and nanofluidic devices, such as those used in nanopore-based nucleic acid sequencing are described herein. In certain variations, a method of reducing background fluorescence in a MEMS material may include the step of treating a surface of the MEMS material with a low energy ion beam.
1. A method of reducing background fluorescence in a nanopore array comprising a membrane of optically active MEMS material, the method comprising the step of treating a surface of the optically active MEMS material with a low energy helium ion beam without melting, vaporization, deformation or sputtering in the membrane and with fluorescence background reduction that permits single fluorophores transiting nanopores of the nanopore array to be detected.
2. The method of claim 1 , wherein said MEMS material is silicon nitride.
3. The method of claim 2 , wherein said low energy helium ion beam delivers to said surface of said silicon nitride a dosage in the range of from 2e-10 to 8e-10 nC/nm^2.
4. The method of claim 1 , wherein said step of treating includes directing to said surface a helium ion beam that delivers thereto a dose in the range of from 2e-10 to 8e-10 nC/nm^2.
5. The method of claim 1 wherein said detection is carried out with a microscope configured for single molecule detection.
6. The method of claim 1 wherein said MEMS material is selected from the group consisting of silicon nitride, silicon dioxide and aluminum oxide.