DR-NTU (Data) (Nanyang Technological University)
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Highly Sensitive Transistor Sensor for Biochemical Sensing and Health Monitoring Applications: A Review
Transistors have gained tremendous attraction in biochemical
sensing due to their outstanding performance with high sensitivity, flexibility,
selectivity, real-time monitoring, ease of fabrication, and biocompatibility for
various point-of-care biomedical and healthcare applications. Herein, critical
sensing capability by different transistor classes of i) organic field-effect
transistor, ii) organic electrochemical transistor, iii) low dimensional
semiconductor field-effect transistor, and iv) hybrid transistors are
summarized for biochemical (e.g., ions, glucose, antigen/antibody, DNA,
bacteria, virus, cancer biomarkers) detection. Recent advancements in the
transistor field for bioanalyte sensing, including a new class of a
photoelectrochemical transistor, bioreceptor conjugation, strategies to
improve sensitivity and overcoming the limit of detection are discussed in a
focused manner. Furthermore, organic and inorganic active material-based
transistors are compared to find the best fit for specific target bio-detection
and healthcare applications
Replication Data for: A thermogalvanic cell dressing for smart wound monitoring and accelerated healing
TE Analysi
Related Data for: Nanoparticle-induced chemo-resistance: the emerging modulatory effects of engineered nanomaterials on human intestinal cancer cell redox metabolic adaptation
This dataset contains original graphical experimental data for some of the figures in the publication
Related Data for: Phase-change perovskite metasurfaces for dynamic color tuning
Data for: Phase-change perovskite metasurfaces for dynamic color tunin
Localization dataset from GNSS receiver and IMU sensor
IMU and GNSS data generated from CETRAN test be
Replication Data for: High Performance, Flexible, and Thermally Stable All-Solid-State Organic Electrochemical Transistor Based on Thermoplastic Polyurethane Ion Gel
Organic electrochemical transistors (OECTs) are a generation of transistors
with high transconductance, where the whole volume of the semiconducting channel is
involved in the electrochemical doping process. However, the use of liquid electrolytes
limits the application of OECTs, and the doping process is also complicated due to the
presence of water in the electrolyte. In this study, thermoplastic polyurethane (TPU)-based
solid electrolyte was used in OECTs for the first time. Three types of ionic liquids were
blended with a TPU polymer matrix as a solid electrolyte and investigated on the OECTs
based on three kinds of p-type conjugated semiconductors. An in situ spectrochemistry
study was further carried out to confirm the doping/dedoping process of these conjugated
semiconductors by the TPU-based solid electrolyte. The robustness and high stability of the
fabricated solid-state OECTs (SSOECTs) were demonstrated through continuously applied
bias, long time operation under ambient conditions, and varying temperatures (−50 to 120
°C). Highly flexible SSOECTs were also obtained on a polyethylene terephthalate (PET)
substrate, which showed negligible fluctuation in on/off-current (Ion/Ioff) after 1000 cycles of bending. Based on these highperforming
SSOECTs, inverter circuits were fabricated in both unipolar and complementary configurations, where n-type and p-type
OECT-based complementary inverters showed a higher gain (46) compared with that of the unipolar design
Replication Data for: Effect of masker selection schemes on the perceived affective quality of soundscapes: A pilot study
This repository contains the data and replication code for our publication in Inter-Noise 202
Related Data for: Tier 1 grant RG420
Constructing High-Loading Single-Atom/Cluster Catalysts via Electrochemistr
PD-L1 alternative splicing
PhD thesis of Dr Yashu Zhen, graduated in 2022. All data in thesis pertains to this project. Publication being put together with these data and new experiments being finished
Replication Data for: Co-Evaporated MAPbI3 with Graded Fermi Levels Enables Highly Performing, Scalable, and Flexible p-i-n Perovskite Solar Cells
This datasets contains the raw data of the publication that is summarized in the embedded origin files inside power point file