Fabrication of Nanoheight Channels Incorporating Surface Acoustic Wave Actuation via Lithium Niobate for Acoustic Nanofluidics

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Cited by 5

07:23 min

February 5th, 2020

10.3791/60648-v

February 5th, 2020

5.4K views

We demonstrate fabrication of nanoheight channels with the integration of surface acoustic wave actuation devices upon lithium niobate for acoustic nanofluidics via liftoff photolithography, nano-depth reactive ion etching, and room-temperature plasma surface-activated multilayer bonding of single-crystal lithium niobate, a process similarly useful for bonding lithium niobate to oxides.

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Nanoheight Channels

Chapters in this video

0:05

Introduction

0:54

Nano-height Channel Mask Preparation

1:53

Nano-height Channel Fabrication

2:49

Room Temperature Plasma-activated Bonding

4:56

Experimental Setup and Testing

5:54

Results: Representative Fluid Capillary Filling and Surface Acoustic Wave (Saw)-Induced Fluid Draining

6:45

Conclusion

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