Title :
Preliminary study towards the fabrication of the nanoscale optical pH sensor with tailored pKa value by using molecularly imprinting technique
Author :
Suah, Faiz Bukhari Mohd ; Tajri, Narlia ; Noor, Siti Fairuz Mohd ; Jani, A.M.M. ; Taib, Mohd Nasir
Author_Institution :
Fac. of Appl. Sci., Universiti Teknologi MARA, Perlis, Malaysia
Abstract :
Molecularly imprinting is an advanced technique for producing chemically selective binding sites, which recognize a particular molecule, in a macro porous polymer matrix. The pKa value of the indicator is significantly changed up to several orders of magnitude by the imprinting synthesis. This fine-tuning of the reactivity of pH indicators by using the imprinting synthesis (molecularly imprinted polymer) may find novel applications in designing pH sensors with tailored pKa value. Here, we try to describe a technique for the successful imprinting of different structural stages of a pH indicator in a hybrid sol-gel matrix. The proton affinity of the indicator is strongly dependent on this imprinting synthesis. The pH indicator used in this experiment is methyl red. The end result of the proton imprinting technique is the modification of the pKa value of the indicator in the sol-gel matrix. The fabricated imprinted polymer is likely suitable for the construction of the nanoscale optical pH sensor due to the modified pKa value, the large surface area and the pore size of the hybrid sol-gel used in this study.
Keywords :
electrochemical sensors; microsensors; nanotechnology; optical sensors; pH; polymers; proton affinity; sol-gel processing; chemically selective binding sites; hybrid sol-gel matrix; macroporous polymer matrix; molecularly imprinted polymer; molecularly imprinting; nanoscale optical pH sensor fabrication; proton affinity; proton imprinting; Biochemistry; Chemical engineering; Chemical sensors; Optical device fabrication; Optical materials; Optical polymers; Optical sensors; Polymer gels; Protons; Solvents; Molecularly imprinted polymers; Sol-gel; optical pH sensor; pK;
Conference_Titel :
Sensors and the International Conference on new Techniques in Pharmaceutical and Biomedical Research, 2005 Asian Conference on
Print_ISBN :
0-7803-9370-8
DOI :
10.1109/ASENSE.2005.1564506