Wendell K T Coltro
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Explore the profile of Wendell K T Coltro including associated specialties, affiliations and a list of published articles.
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Articles
74
Citations
354
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Recent Articles
1.
Orzari L, Kalinke C, Silva-Neto H, Rocha D, Camargo J, Coltro W, et al.
Anal Chem
. 2025 Jan;
97(3):1482-1494.
PMID: 39817415
A few decades ago, the technological boom revolutionized access to information, ushering in a new era of research possibilities. Electrochemical devices have recently emerged as a key scientific advancement utilizing...
2.
Recent developments on aerial lab-on-a-drone platforms for remote environmental monitoring: A review
Silva-Neto H, da Silva Sousa D, Duarte L, da Silveira Petruci J, Coltro W
Anal Chim Acta
. 2025 Jan;
1337():343544.
PMID: 39800503
Background: Distinct classes of environmental contaminants - such as microplastics, volatile organic compounds, inorganic gases, hormones, pesticides/herbicides, and heavy metals - have been continuously released into the environment from different...
3.
Rocha D, Baldo T, Silva-Neto H, Duarte-Junior G, Bazilio G, Borges C, et al.
Talanta
. 2024 Nov;
268(Pt 1):125337.
PMID: 39491949
This study describes the development of a simple, disposable, and eco-friendly electrochemical immunosensor for rapid detection of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Electrochemical devices were manufactured by stencil-printing...
4.
Velasco L, Rocha D, de Campos R, Coltro W
Analyst
. 2024 Oct;
150(1):60-68.
PMID: 39417394
Digital microfluidics (DMF) is a platform that enables the automated manipulation of individual droplets of sizes ranging from nanoliter to microliter and can be coupled with numerous techniques, including colorimetry....
5.
Sousa L, Moreira N, Guinati B, Coltro W, Corton E, Figueredo F
Talanta
. 2024 Jun;
277:126361.
PMID: 38878509
This paper presents an innovative application of chitosan material to be used as pH-responsive valves for the precise control of lateral flow in microfluidic paper-based analytical devices (μPADs). The fabrication...
6.
Romanholo P, de Andrade L, Silva-Neto H, Coltro W, Sgobbi L
Anal Chem
. 2024 Mar;
96(14):5349-5356.
PMID: 38554084
The patterning of hydrophilic paper with hydrophobic materials has emerged as an interesting method for the fabrication of paper-based devices (PADs). Herein, we demonstrate a digitally automated, easy, low-cost, eco-friendly,...
7.
Duarte L, Figueredo F, Chagas C, Corton E, Coltro W
Anal Chim Acta
. 2024 Mar;
1299:342429.
PMID: 38499426
3D printing has revolutionized the manufacturing process of microanalytical devices by enabling the automated production of customized objects. This technology promises to become a fundamental tool, accelerating investigations in critical...
8.
Silva-Neto H, Jaime J, Rocha D, Sgobbi L, Coltro W
Anal Chim Acta
. 2024 Mar;
1297:342336.
PMID: 38438226
Background: Developing disposable paper-based devices has positively impacted analytical science, particularly in developing countries. Some benefits of those devices include their versatility, affordability, environmentally friendly, and the possibility of being...
9.
Silva-Neto H, Barbeira P, Coltro W, Piccin E
Food Chem
. 2024 Feb;
444:138677.
PMID: 38359702
In this study, compact 3D-printed carbon black (CB) electrodes were manufactured for using in folic acid (FA) analysis in fruit samples. Before application in FA analysis, the electrode surfaces were...
10.
Sousa L, Guinati B, Maciel L, Baldo T, Duarte L, Takeuchi R, et al.
Lab Chip
. 2023 Dec;
24(3):467-479.
PMID: 38126917
Multiple protocols have been reported to fabricate paper-based analytical devices (PADs). However, some of these techniques must be revised because of the instrumentation required. This paper describes a versatile and...