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Design and fabrication Clark sensor for oxygen, College of Engineering Chemistry, Isfahan University of Technology, (Isfahan, Iran), (2011).
CdSe Quantum Dot Nanoparticles: Synthesis and Application in the Development of Molecularly Imprinted Polymer-Based Dual Optical Sensors
CdSe Quantum Dot Nanoparticles: Synthesis and Application in the Development of Molecularly Imprinted Polymer-Based Dual Optical Sensors
A Novel Non-enzymatic Selective and Sensitive Glucose Sensor Based on Nickel?Copper Oxide@3D-rGO/MWCNTs
A Novel Non-enzymatic Selective and Sensitive Glucose Sensor Based on Nickel?Copper Oxide@3D-rGO/MWCNTs
A Novel Non-enzymatic Selective and Sensitive Glucose Sensor Based on Nickel-Copper Oxide@3DrGO/ MWCNTs
A Novel Non-enzymatic Selective and Sensitive Glucose Sensor Based on Nickel-Copper Oxide@3DrGO/ MWCNTs
Synthesis of molecularly imprinted polymer on carbon quantum dots as an optical sensor for selective fluorescent determination of promethazine hydrochloride
Synthesis of molecularly imprinted polymer on carbon quantum dots as an optical sensor for selective fluorescent determination of promethazine hydrochloride
Fabrication of Electrochemical Sensor Based on CeO 2-SnO 2 Nanocomposite Loaded on Pd Support for Determination of Nitrite at Trace Levels
Fabrication of Electrochemical Sensor Based on CeO 2-SnO 2 Nanocomposite Loaded on Pd Support for Determination of Nitrite at Trace Levels
Fabrication of Electrochemical Sensor Based on CeO2- SnO2 Nanocomposite Loaded on Pd Support for Determination of Nitrite at Trace Levels
Fabrication of Electrochemical Sensor Based on CeO2- SnO2 Nanocomposite Loaded on Pd Support for Determination of Nitrite at Trace Levels
A Novel Non Enzymatic Selective and Sensitive Glucose Sensor Based on Nickel Copper Oxide@3D-rGO/MWCNT
A Novel Non Enzymatic Selective and Sensitive Glucose Sensor Based on Nickel Copper Oxide@3D-rGO/MWCNT