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  1. Alhadrami, H. A., Chinnappan, R., Eissa, S., Rahamn, A. A., & Zourob, M. (2017). High affinity truncated DNA aptamers for the development of fluorescence based ...

  2. Jul 7, 2023 · @article{Seyyedi2023MarinePC, title={Marine plastics, circular economy, and artificial intelligence: A comprehensive review of challenges, solutions, and policies.}, author={Seyed Reza Seyyedi and Elaheh Kowsari and Seeram Ramakrishna and Mohammad Gheibi and Amutha Chinnappan}, journal={Journal of environmental management}, year={2023}, volume ...

  3. Dec 4, 2017 · Wearable and flexible electronics are currently a highly demanded and passionate topic of research owing to their excellent combination of related base functions with stretchability and foldability. Textiles are a universal interface and ideal substrate for the integration of nanomaterials, electronics, and

  4. Mar 7, 2019 · For blood glucose, there was a significant interaction between group and time (F = 2.16, p = 0.011). There was a significant time effect (F = 6.25, p = 0.0002) where a progressive increase in glycemia in the diabetic control group was observed while the C. nutans and quercetin groups

  5. Dec 14, 2017 · Wearable and flexible electronics are currently a highly demanded and passionate topic of research owing to their excellent combination of related base functions with stretchability and foldability. Textiles are a universal interface and ideal substrate for the integration of nanomaterials, electronics, and optical devices. Smart/e-textiles are fabrics that have been designed and developed with new technologies that provide benefits to the wearer with increased functionality. The rapid ...

  6. Mohan Kumar Chinnappan Balasubramaniam System Engineer at IBM India Private Limited Greater Phoenix Area. Mohan chinnappan Mohan chinnappan Coimbatore South. 4 others named Mohan Chinnappan are on ...

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  7. Apr 11, 2023 · Wearable sensors have drawn vast interest for their convenience to be worn on body to monitor and track body movements or exercise activities in real time. However, wearable electronics rely on powering systems to function. Herein, a self-powered, porous, flexible, hydrophobic and breathable nanofibrous membrane based on electrospun polyvinylidene fluoride (PVDF) nanofiber has been developed as a tactile sensor with low-cost and simple fabrication for human body motion detection and ...