Fused deposition modeling: process, materials, parameters, properties, and applications

K Rajan, M Samykano, K Kadirgama… - … International Journal of …, 2022 - Springer
In recent years, 3D printing technology has played an essential role in fabricating
customized products at a low cost and faster in numerous industrial sectors. Fused …

Inkjet printing and 3D printing strategies for biosensing, analytical, and diagnostic applications

K Zub, S Hoeppener, US Schubert - Advanced Materials, 2022 - Wiley Online Library
Inkjet printing and 3D inkjet printing have found many applications in the fabrication of a
great variety of devices, which have been developed with the aim to improve and simplify …

Electrochemical (bio) sensors enabled by fused deposition modeling-based 3D printing: A guide to selecting designs, printing parameters, and post-treatment …

JS Stefano, C Kalinke, RG da Rocha, DP Rocha… - 2022 - ACS Publications
The 3D printing (or additive manufacturing, AM) technology is capable to provide a quick
and easy production of objects with freedom of design, reducing waste generation. Among …

Additive-manufactured (3D-printed) electrochemical sensors: A critical review

RM Cardoso, C Kalinke, RG Rocha, PL Dos Santos… - Analytica chimica …, 2020 - Elsevier
Additive manufacturing or three-dimensional (3D)-printing is an emerging technology that
has been applied in the development of novel materials and devices for a wide range of …

3D printing for electrochemical energy applications

MP Browne, E Redondo, M Pumera - Chemical reviews, 2020 - ACS Publications
Additive manufacturing (also known as three-dimensional (3D) printing) is being extensively
utilized in many areas of electrochemistry to produce electrodes and devices, as this …

Complete additively manufactured (3D-printed) electrochemical sensing platform

EM Richter, DP Rocha, RM Cardoso… - Analytical …, 2019 - ACS Publications
Herein, we report a complete additively manufactured (AM) electrochemical sensing
platform. In this approach, a fully AM/3D-printed electrochemical system, using a …

New conductive filament ready-to-use for 3D-printing electrochemical (bio) sensors: Towards the detection of SARS-CoV-2

JS Stefano, LRG e Silva, RG Rocha, LC Brazaca… - Analytica Chimica …, 2022 - Elsevier
The 3D printing technology has gained ground due to its wide range of applicability. The
development of new conductive filaments contributes significantly to the production of …

3D-Printed graphene/polylactic acid electrode for bioanalysis: Biosensing of glucose and simultaneous determination of uric acid and nitrite in biological fluids

RM Cardoso, PRL Silva, AP Lima, DP Rocha… - Sensors and actuators b …, 2020 - Elsevier
Additive manufacturing, also known as 3D-printing, is receiving great interest by chemists
due to the easy design of novel materials, fast prototyping and reducing waste, which …

Comparison of activation processes for 3D printed PLA-graphene electrodes: electrochemical properties and application for sensing of dopamine

C Kalinke, NV Neumsteir, G de Oliveira Aparecido… - Analyst, 2020 - pubs.rsc.org
This paper reports the comparison of the electrochemical properties of 3D PLA-graphene
electrodes (PLA-G) under different activation conditions and through different processes. In …

3D-printed reduced graphene oxide/polylactic acid electrodes: A new prototyped platform for sensing and biosensing applications

VAOP Silva, WS Fernandes-Junior, DP Rocha… - Biosensors and …, 2020 - Elsevier
This work presents a novel procedure involving the sequential chemical treatment to
generate reduced graphene oxide (rGO) within 3D-printed polylactic acid (PLA) electrodes …