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Molecular keypad controlled circuit for Ce(iii) and NO3 - ions recognition by μw synthesized silicon-embedded organic luminescent sensor.


ABSTRACT: This report demonstrates the mimicking of an electronic circuit diagram towards Ce(iii) ion sensing response supported by molecular keypads. The probe naphthyl based triazole linked silatrane (NTS) was efficiently synthesized using a series of microwave mediated reactions. The luminescent sensor NTS was explored for the ion sensing response towards Ce(iii) ions using DMSO and DMSO : H2O 4 : 1 (v/v) as solvent media, respectively. The role of water in Ce(iii) ion sensing was detected as 'turn-off' response that contradicts the 'turn-on' with DMSO. Further, the sensing of NO3 - ions by NTS-Ce(iii) ensemble was associated with blue shift on absorption maxima. These mimicking response studies were sketched as circuit diagrams assisted by molecular keypad behaviour as IMPLICATION output logic gate.

SUBMITTER: Kaur N 

PROVIDER: S-EPMC9088866 | biostudies-literature | 2018 Oct

REPOSITORIES: biostudies-literature

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Molecular keypad controlled circuit for Ce(iii) and NO<sub>3</sub> <sup>-</sup> ions recognition by μw synthesized silicon-embedded organic luminescent sensor.

Kaur Navpreet N   Singh Gurjaspreet G   Singh Jasbhinder J   Singh Akshpreet A   Satija Pinky P   Kaur Gurpreet G   Singh Jandeep J  

RSC advances 20181029 64


This report demonstrates the mimicking of an electronic circuit diagram towards Ce(iii) ion sensing response supported by molecular keypads. The probe naphthyl based triazole linked silatrane (NTS) was efficiently synthesized using a series of microwave mediated reactions. The luminescent sensor NTS was explored for the ion sensing response towards Ce(iii) ions using DMSO and DMSO : H<sub>2</sub>O 4 : 1 (v/v) as solvent media, respectively. The role of water in Ce(iii) ion sensing was detected a  ...[more]

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