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Amino acid sensing by impedance of porous monolith-type ion exchanger
Authors:Hidemitsu Aoki  Kazuki Miyano  Daisaku Yano  Koji Yamanaka  Takashi Sugino
Affiliation:a Department of Electrical Electronic and Information Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan
b R&D Center, Organo Corporation, 4-4-1 Nishionuma, Sagamihara, Kanagawa 229-0012, Japan
Abstract:A biological and chemical sensor with rapid response at the microlevel is required for health and environmental monitoring. To develop a high-performance sensor, we use a porous monolith-type ion exchanger having three-dimensional acceptors to sense chemical substances. This porous monolith-type ion exchanger has an open-cellular structure with 5-50-μm diameter pores. The concentration of amino acids in the solution can be detected by measuring the impedance of the monolith-type ion exchanger. The novel ion exchanger has a high-exchange rate and high-electrical conductivity compared with that of the conventional ion-exchange resins. It is found that the impedance of the porous ion exchanger varies widely, depending on the amino acids such as glycine, asparatic acid, lysine, and phenylalanine. The impedance of anion exchanger had the highest value for phenylalanine with a benzene ring. OH-ion conduction is suppressed possibly due to the phenylalanine molecules stabilized by the hydrophobic interaction with the anion exchanger. In addition, we succeeded in sensing amino acid ions with concentration as low as 10−7 mol. The porous ion exchanger has the potential of a high-performance device for biological and chemical sensing.
Keywords:Porous monolith  Ion exchanger  Impedance  Sensor  Amino acid
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