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    Publication
    Packaged bulk micromachined triglyceride biosensor
    (03-05-2010)
    Mohanasundaram, S. V.
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    Mercy, S.
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    Harikrishna, P. V.
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    Rani, Kailash
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    Estimation of triglyceride concentration is important for the health and food industries. Use of solid state biosensors like Electrolyte Insulator Semiconductor Capacitors (EISCAP) ensures ease in operation with good accuracy and sensitivity when compared to conventional sensors. In this paper we report on packaging of miniaturized EISCAP sensors on silicon. The packaging involves glass to silicon bonding using adhesive. Since this kind of packaging is done at room temperature, it cannot damage the thin dielectric layers on the silicon wafer unlike the high temperature anodic bonding technique and can be used for sensors with immobilized enzyme without denaturing the enzyme. The packaging also involves a teflon capping arrangement which helps in easy handling of the bio-analyte solutions. The capping solves two problems. Firstly, it helps in the immobilization process where it ensures the enzyme immobilization happens only on one pit and secondly it helps with easy transport of the bio-analyte into the sensor pit for measurements. © 2010 Copyright SPIE - The International Society for Optical Engineering.
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    Publication
    Compact silicon biosensor for the clinical range estimation of blood serum triglycéride
    (01-01-2013)
    Veeramani, M. S.
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    Ratchagar, N. P.
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    Pavan, S.
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    Prakash, S.
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    Electrolyte Insulator Semiconductor Capacitor (El S CAP) is a transducer that can detect triglycérides (TGs) in blood serum through an enzymatic response that changes the pH of the electrolyte (blood serum). This change in pH is transformed by the EISCAP to a shift in the capacitance-voltage (C-V) characteristics of the device which in turn can be mapped to the amount of TG in blood serum. We have developed a miniaturized biochip with immobilized enzyme integrated with a thin film counter electrode for the estimation of TG in blood serum within the clinical range. The miniaturized devices are tested using blood serum sample to estimate the TG concentration and compared with clinical data. © 2013 IEEE.
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    Publication
    Detection of Urea and Ammonia with Aluminium Coated Polysilicon Nanoresonators
    (01-06-2019)
    Thodi, Fidal Vallam
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    Mottour Vinayagam, Chinnamani
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    Gayathri, S.
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    Aluminium coated polysilicon (Al-polySi) nanoresonator has been used to design a urea biosensor. The etching characteristic of Al by the ammonium hydroxide from urea hydrolysis in the presence of urease was used to estimate the urea concentration. Urease immobilized on Al coated polySi indicated smoothening of the surface with increasing urea concentration, confirming the etching of Al. The nanoresonator could estimate between 10-1000 nM concentrations of urea. The sensing was not affected in the presence of interferents such as uric acid and ascorbic acid, thus making it specific for urea. The sensor was found to be highly sensitive and specific and can have potential application in the field of medical diagnostics and environmental monitoring.