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Featured researches published by Tarushee Ahuja.


Chemistry Central Journal | 2011

Quantifying uncertainty in the measurement of arsenic in suspended particulate matter by Atomic Absorption Spectrometry with hydride generator

Nahar Singh; Vn Ojha; Nijhuma Kayal; Tarushee Ahuja; Prabhat K. Gupta

Arsenic is the toxic element, which creates several problems in human being specially when inhaled through air. So the accurate and precise measurement of arsenic in suspended particulate matter (SPM) is of prime importance as it gives information about the level of toxicity in the environment, and preventive measures could be taken in the effective areas. Quality assurance is equally important in the measurement of arsenic in SPM samples before making any decision. The quality and reliability of the data of such volatile elements depends upon the measurement of uncertainty of each step involved from sampling to analysis. The analytical results quantifying uncertainty gives a measure of the confidence level of the concerned laboratory. So the main objective of this study was to determine arsenic content in SPM samples with uncertainty budget and to find out various potential sources of uncertainty, which affects the results. Keeping these facts, we have selected seven diverse sites of Delhi (National Capital of India) for quantification of arsenic content in SPM samples with uncertainty budget following sampling by HVS to analysis by Atomic Absorption Spectrometer-Hydride Generator (AAS-HG). In the measurement of arsenic in SPM samples so many steps are involved from sampling to final result and we have considered various potential sources of uncertainties. The calculation of uncertainty is based on ISO/IEC17025: 2005 document and EURACHEM guideline. It has been found that the final results mostly depend on the uncertainty in measurement mainly due to repeatability, final volume prepared for analysis, weighing balance and sampling by HVS. After the analysis of data of seven diverse sites of Delhi, it has been concluded that during the period from 31st Jan. 2008 to 7th Feb. 2008 the arsenic concentration varies from 1.44 ± 0.25 to 5.58 ± 0.55 ng/m3 with 95% confidence level (k = 2).


Journal of Colloid and Interface Science | 2012

High yield synthesis of intrinsic, doped and composites of nano-zinc oxide using novel combinatorial method

Nahar Singh; Rashmi; Tarushee Ahuja; Sukhvir Singh; Renu Pasricha; D. Haranath

A novel synthesis of the production of luminescent zinc oxide (ZnO), either in its intrinsic, metal, non-metal-doped or composite forms with high yield has been developed by parallel iterative techniques, within a combinatorial library prepared by the reduction of nitroarenes. The reduction of nitroarenes by aluminium/zinc dusts in alkaline medium (pH 10±2) forms azoxy compounds, whereas in acidic medium (pH 4.9±0.2) forms phenyl hydroxylamine and zinc/aluminium dust gets oxidised into respective hydroxide. Here, we demonstrate the reduction of nitroarenes at neutral pH (7.0±0.2), which forms intrinsic as well as doped ZnO at 50±5°C using zinc dust alone or mixtures of salts of several transition and non-transition metals in presence of 1:10 ratio of solvent and water. Interestingly, it is observed that the photoluminescence emission could be tuned in a wide range from 390 to 615 nm useful for many display related devices.


Biomaterials | 2007

Biomolecular immobilization on conducting polymers for biosensing applications

Tarushee Ahuja; Irfan Ahmad Mir; Devendra Kumar; Rajesh


Sensors and Actuators B-chemical | 2009

Recent progress in the development of nano-structured conducting polymers/nanocomposites for sensor applications

Rajesh; Tarushee Ahuja; Devendra Kumar


Sensors and Actuators B-chemical | 2008

Potentiometric urea biosensor based on BSA embedded surface modified polypyrrole film

Tarushee Ahuja; Irfan Ahmad Mir; Devendra Kumar; Rajesh


Materials Science and Engineering: C | 2011

Potentiometric urea biosensor based on multi-walled carbon nanotubes (MWCNTs)/silica composite material

Tarushee Ahuja; Devendra Kumar; Nahar Singh; A. M. Biradar; Rajesh


Thin Solid Films | 2010

An amperometric uric acid biosensor based on Bis[sulfosuccinimidyl] suberate crosslinker/3-aminopropyltriethoxysilane surface modified ITO glass electrode

Tarushee Ahuja; Rajesh; Devendra Kumar; Vinod Kumar Tanwar; Vikash Sharma; Nahar Singh; A. M. Biradar


Journal of Nanoscience and Nanotechnology | 2011

Immobilization of uricase enzyme on self-assembled gold nanoparticles for application in uric acid biosensor.

Tarushee Ahuja; Vinod Kumar Tanwar; Sujeet K. Mishra; Devendra Kumar; A. M. Biradar; Rajesh


Environmental Progress | 2013

A process for the selective removal of arsenic from contaminated water using acetate functionalized zinc oxide nanomaterials

Nahar Singh; S.P. Singh; Vinay Gupta; Harish Kumar Yadav; Tarushee Ahuja; S. Swarupa Tripathy; Rashmi


Sensor Letters | 2008

Polymer Based Urea Biosensors: A Brief Overview

Tarushee Ahuja; Devendra Kumar; Rajesh

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Devendra Kumar

Delhi Technological University

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Rajesh

Council of Scientific and Industrial Research

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Nahar Singh

National Physical Laboratory

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A. M. Biradar

National Physical Laboratory

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Irfan Ahmad Mir

Delhi Technological University

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Rashmi

National Physical Laboratory

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Vinod Kumar Tanwar

Council of Scientific and Industrial Research

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D. Haranath

National Physical Laboratory

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Nijhuma Kayal

Central Glass and Ceramic Research Institute

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