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Facile Microembossing Process for Microchannel Fabrication for Nanocellulose-Paper-Based Microfluidics

4.6 (282) · € 27.50 · In Magazzino

Facile Microembossing Process for Microchannel Fabrication for  Nanocellulose-Paper-Based Microfluidics
Procedure to fabricate a microfluidic device. (1)-(3) Master

Procedure to fabricate a microfluidic device. (1)-(3) Master

Frontiers  Breaking the clean room barrier: exploring low-cost  alternatives for microfluidic devices

Frontiers Breaking the clean room barrier: exploring low-cost alternatives for microfluidic devices

Polymers, Free Full-Text

Polymers, Free Full-Text

Trends in Droplet Microfluidics: From Droplet Generation to Biomedical  Applications

Trends in Droplet Microfluidics: From Droplet Generation to Biomedical Applications

Facile Fabrication of a Silver Nanoparticle Immersed, Surface-Enhanced  Raman Scattering Imposed Paper Platform through Successive Ionic Layer  Absorption and Reaction for On-Site Bioassays

Facile Fabrication of a Silver Nanoparticle Immersed, Surface-Enhanced Raman Scattering Imposed Paper Platform through Successive Ionic Layer Absorption and Reaction for On-Site Bioassays

PDF) Fabrication of three-dimensional microfluidic channels in a single  layer of cellulose paper

PDF) Fabrication of three-dimensional microfluidic channels in a single layer of cellulose paper

Facile Microembossing Process for Microchannel Fabrication for Nanocellulose -Paper-Based Microfluidics

Facile Microembossing Process for Microchannel Fabrication for Nanocellulose -Paper-Based Microfluidics

Proposed microfluidic master mould fabrication process. 1. CAD design

Proposed microfluidic master mould fabrication process. 1. CAD design

Matrix-Assisted Three-Dimensional Printing of Cellulose Nanofibers for Paper  Microfluidics

Matrix-Assisted Three-Dimensional Printing of Cellulose Nanofibers for Paper Microfluidics

Understanding Wax Printing: A Simple Micropatterning Process for Paper-Based  Microfluidics

Understanding Wax Printing: A Simple Micropatterning Process for Paper-Based Microfluidics