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Electrolyte-gated organic transistors (EGOTs) exponentially amplify minute polarization changes at the gate electrode into the channel current. Antibodies grafted on the EGOT gate electrode enable specific recognition of target species, yet this strategy may not be sufficient per se to resolve the target from its antagonists. Here, a label-free EGOT immunosensor is functionalized with the antibody anti-L-enantiomer of Tryptophan (Trp), exhibiting sensitivity to Trp chirality. Nevertheless, the relative current change in transfer curves does not unambiguously differentiate L from D enantiomers in the concentration range 1 fm to 10 nm. To overcome this limitation, a multivariate principal component analysis (PCA) is applied on the set of renormalized parameters, extracted from the whole transfer curves according to our recent EGOT model: both L and D enantiomers are neatly separated by the sign of their principal components. Enantiomeric discrimination onset is 1 and 10 pm at 90% level of confidence and prediction, respectively, at least one order of magnitude lower than the enantiodiscrimination levels previously reported with EGOT biosensor. The same analysis performed on the best fit dose curves allows to discriminate L and D enantiomers down to the unprecedented level of detection of 100 fm.
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http://dx.doi.org/10.1002/smtd.202500545 | DOI Listing |
J Environ Manage
September 2025
Ulsan Advanced Energy Technology R&D Center, Korea Institute of Energy Research (KIER), 25 Techno Saneopro 55beon-gil, Nam-gu, Ulsan, 44776, Republic of Korea. Electronic address:
The fuel cells of the future for sustainable development are solid oxide fuel cell (SOFCs) and phosphoric acid fuel cell (PAFCs), and they will have to coexist as future energy sources. This requires a proper understanding of the properties of the materials used in both fuel cell systems and the ability to identify and mitigate the challenges associated with materials that have a high environmental impact. In this study, all materials and processes involved in the manufacturing of 200 kW SOFC and PAFC systems for power generation are divided into stack, balance of plant (BOP) and system assembling components, and a cradle-to-gate environmental impact assessment is conducted to assess the life cycle process from raw materials extraction to final system manufacturing.
View Article and Find Full Text PDFNature
September 2025
Department of Physics, University of California, Berkeley, CA, USA.
Trapped-ion applications, such as in quantum information processing, precision measurements, optical clocks and mass spectrometry, rely on specialized high-performance ion traps. The last three of these applications typically use traditional machining to customize macroscopic 3D Paul traps, whereas quantum information processing experiments usually rely on photolithographic techniques to miniaturize the traps and meet scalability requirements. Using photolithography, however, it is challenging to fabricate the complex 3D electrode structures required for optimal confinement.
View Article and Find Full Text PDFRes Sq
August 2025
Department of Electrical Engineering, The Pennsylvania State University, University Park, PA, 16802, United States.
Real-time, multiplexed monitoring of wound infection biomarkers is essential for early detection of infection and inflammation, as well as for evaluating wound healing progression. However, existing biosensing technologies lack the sensitivity, specificity, and integration needed to meet these clinical demands. To address current limitations in wound monitoring, we developed a portable and multimodal sensor system capable of simultaneously detecting uric acid (UA), phenazine-1-carboxylic acid (PCA), interleukin-6 (IL-6), and pH.
View Article and Find Full Text PDFNat Commun
August 2025
Key Laboratory for the Physics and Chemistry of Nanodevices and School of Electronics, Peking University, Beijing, China.
Pressure sensors, especially the typical capacitive sensors that feature low power consumption, have drawn considerable interest in emerging and rapidly growing fields such as flexible electronics and humanoid robots, but often suffer from limited performance. Here, we report a contact-dominated design for capacitive pressure sensors to dramatically improve the sensing response and linearity over a broad pressure range. This design is implemented by utilizing hierarchical microstructured electrodes made of robust conductive composites with metallic coverage and layered dielectrics with high unit-area capacitance to realize localized electric-displacement-field-enhanced capacitance change.
View Article and Find Full Text PDFMicromachines (Basel)
July 2025
College of Mechanical and Electrical Engineering, Northeast Forestry University, Harbin 150040, China.
The detection of proteins plays a key role in disease diagnosis and drug development. For this, we numerically investigated a novel microfluidic motor actuated by an induced-charge electro-osmotic (ICEO) whirling flow. An alternating current-flow field effect transistor is engineered to modulate the profiles of ICEO streaming to stimulate and adjust the whirling flow in the circle microfluidic chamber.
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