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Adhesive lift method for patterning arbitrary-shaped thin ion-selective films in micro/nanofluidic device - Lab on a Chip (RSC Publishing)

By A Mystery Man Writer

Micro/nanofluidic platforms with nanoporous films have been utilized as research tools for studying electrokinetic phenomena occurring not only in macro-scale systems such as electro-desalination but also in micro-scale systems such as bio-molecular preconcentrators. However, due to the limitations of fabric

Adhesive lift method for patterning arbitrary-shaped thin ion-selective  films in micro/nanofluidic device - Lab on a Chip (RSC Publishing)

Adhesive lift method for patterning arbitrary-shaped thin ion-selective films in micro/nanofluidic device - Lab on a Chip (RSC Publishing)

Adhesive lift method for patterning arbitrary-shaped thin ion-selective  films in micro/nanofluidic device - Lab on a Chip (RSC Publishing)

Adhesive lift method for patterning arbitrary-shaped thin ion-selective films in micro/nanofluidic device - Lab on a Chip (RSC Publishing) DOI:10.1039/D2LC00185C

Adhesive lift method for patterning arbitrary-shaped thin ion-selective  films in micro/nanofluidic device - Lab on a Chip (RSC Publishing)

Polymers, Free Full-Text

Adhesive lift method for patterning arbitrary-shaped thin ion-selective  films in micro/nanofluidic device - Lab on a Chip (RSC Publishing)

Nonlinear restructuring of patterned thin films by residual stress engineering into out-of-plane wavy-shaped electrostatic microactuators for high-performance radio-frequency switches

Adhesive lift method for patterning arbitrary-shaped thin ion-selective  films in micro/nanofluidic device - Lab on a Chip (RSC Publishing)

Lipid vesicle-based molecular robots - Lab on a Chip (RSC Publishing) DOI:10.1039/D3LC00860F

Adhesive lift method for patterning arbitrary-shaped thin ion-selective  films in micro/nanofluidic device - Lab on a Chip (RSC Publishing)

Adhesive lift method for patterning arbitrary-shaped thin ion-selective films in micro/nanofluidic device - Lab on a Chip (RSC Publishing) DOI:10.1039/D2LC00185C

Adhesive lift method for patterning arbitrary-shaped thin ion-selective  films in micro/nanofluidic device - Lab on a Chip (RSC Publishing)

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Adhesive lift method for patterning arbitrary-shaped thin ion-selective  films in micro/nanofluidic device - Lab on a Chip (RSC Publishing)

Adhesive lift method for patterning arbitrary-shaped thin ion-selective films in micro/nanofluidic device - Lab on a Chip (RSC Publishing) DOI:10.1039/D2LC00185C

Adhesive lift method for patterning arbitrary-shaped thin ion-selective  films in micro/nanofluidic device - Lab on a Chip (RSC Publishing)

Lipid vesicle-based molecular robots - Lab on a Chip (RSC Publishing) DOI:10.1039/D3LC00860F

Adhesive lift method for patterning arbitrary-shaped thin ion-selective  films in micro/nanofluidic device - Lab on a Chip (RSC Publishing)

Layer-Scale and Chip-Scale Transfer Techniques for Functional Devices and Systems: A Review. - Abstract - Europe PMC

Adhesive lift method for patterning arbitrary-shaped thin ion-selective  films in micro/nanofluidic device - Lab on a Chip (RSC Publishing)

Recent advances in microfluidic technology for manipulation and analysis of biological cells (2007–2017) - ScienceDirect

Adhesive lift method for patterning arbitrary-shaped thin ion-selective  films in micro/nanofluidic device - Lab on a Chip (RSC Publishing)

Integration Techniques for Micro/Nanostructure-based Large-Area Electronics