Daria V. Andreeva
Papers
10
Total Citations
120
H-Index
7
About
Daria V. Andreeva is a pioneering researcher at the intersection of soft matter, bioinspired materials, and autonomous chemical systems. Her work centers on developing intelligent hydrogels and graphene oxide-based membranes that mimic biological functions, with applications spanning soft robotics, biomedical diagnostics, and smart architecture. Andreeva’s most impactful contribution is a soft hydrogel actuator for rapid bacteria detection, reducing testing time from three days to just 15 minutes—a breakthrough cited 37 times. She has also advanced large-scale self-assembly of anisotropic graphene oxide films for biomimetic stimuli-responsive performance (23 citations) and created graphene oxide–DNA sandwiched membranes exhibiting neuromorphic ion transport (14 citations). Her ultra-tough graphene oxide/DNA 2D hydrogels integrate intrinsic sensing and actuation (14 citations), while her work on robotized synthesis and analysis of graphene oxide membranes (9 citations) pioneers the use of collaborative robots for materials development. Andreeva’s research, with over 120 total citations, consistently pushes boundaries in sustainable design, machine-learning-assisted detection, and autonomous laboratory processes, establishing her as a leader in next-generation responsive materials and bioanalytical platforms.
Research Focus
Key Achievements
Top Papers
- 1Soft Hydrogel Actuator for Fast Machine-Learning-Assisted Bacteria Detection37 citations · 2022
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- 7Graphene oxide/DNA-aerogel pressure and acoustic sensor7 citations · 2025
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- 9Bioinspired, biomimetic hydrogels3 citations · 2023
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