Detail publikačního výsledku

Printing technologies for monitoring crop health

PANACEK, D.; KUPKA, V.; NALEPA, M.; DEDEK, I.; ALVAREZ-DIDUK, R.; OLENIK, S.; FLAUZINO, J.; ZDRAZIL, J.; JAKUBEC, P.; ZDRAZIL, L.; SPICHAL, L.; SONIGARA, K.; ZBORIL, R.; PUMERA, M.; MERKOCI, A.; WANG, J.; DE DIEGO, N.; GUDER, F.; OTYEPKA, M.

Originální název

Printing technologies for monitoring crop health

Anglický název

Printing technologies for monitoring crop health

Druh

Článek WoS

Originální abstrakt

Agricultural production requires low-cost sensors capable of delivering reliable, high-resolution data across large areas. Rising food demand, limited arable land, and severe soil degradation have accelerated the adoption of precision agriculture, which relies on real-time monitoring of soil, plant, and environmental conditions. Central to this shift is the development of scalable sensor technologies enabled by advances in materials science. Printing techniques, including inkjet, screen, aerosol jet, 3D printing, and direct laser writing, offer versatile routes to fabricate flexible, large-area, and plant-integrated sensors. This Review surveys recent progress in printable low-dimensional materials for agricultural sensing, examines their physicochemical properties in relation to sensor performance, and discusses key challenges and future opportunities requiring interdisciplinary integration.

Anglický abstrakt

Agricultural production requires low-cost sensors capable of delivering reliable, high-resolution data across large areas. Rising food demand, limited arable land, and severe soil degradation have accelerated the adoption of precision agriculture, which relies on real-time monitoring of soil, plant, and environmental conditions. Central to this shift is the development of scalable sensor technologies enabled by advances in materials science. Printing techniques, including inkjet, screen, aerosol jet, 3D printing, and direct laser writing, offer versatile routes to fabricate flexible, large-area, and plant-integrated sensors. This Review surveys recent progress in printable low-dimensional materials for agricultural sensing, examines their physicochemical properties in relation to sensor performance, and discusses key challenges and future opportunities requiring interdisciplinary integration.

Klíčová slova

reduced graphene oxide; ink; perspectives; performance; humidity

Klíčová slova v angličtině

reduced graphene oxide; ink; perspectives; performance; humidity

Autoři

PANACEK, D.; KUPKA, V.; NALEPA, M.; DEDEK, I.; ALVAREZ-DIDUK, R.; OLENIK, S.; FLAUZINO, J.; ZDRAZIL, J.; JAKUBEC, P.; ZDRAZIL, L.; SPICHAL, L.; SONIGARA, K.; ZBORIL, R.; PUMERA, M.; MERKOCI, A.; WANG, J.; DE DIEGO, N.; GUDER, F.; OTYEPKA, M.

Rok RIV

2026

Vydáno

24.01.2026

Nakladatel

Springer Nature

Periodikum

Nature Communications

Svazek

17

Číslo

1

Stát

Spojené království Velké Británie a Severního Irska

Strany od

1

Strany do

27

Strany počet

27

URL

Plný text v Digitální knihovně

BibTex

@article{BUT201803,
  author="{} and  {} and  {} and  {} and  {} and  {} and  {} and  {} and  {} and  {} and  {} and Kevalkumar Kishorbhai {Sonigara} and  {} and Martin {Pumera} and  {} and  {} and  {} and  {} and  {}",
  title="Printing technologies for monitoring crop health",
  journal="Nature Communications",
  year="2026",
  volume="17",
  number="1",
  pages="27",
  doi="10.1038/s41467-026-68778-6",
  issn="2041-1723",
  url="https://www.nature.com/articles/s41467-026-68778-6"
}