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10.1002/macp.201800561

http://scihub22266oqcxt.onion/10.1002/macp.201800561
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32327916!7168478!32327916
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suck abstract from ncbi


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pmid32327916      Macromol+Chem+Phys 2019 ; 220 (10): 1800561
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  • Progress in the Development of Intrinsically Conducting Polymer Composites as Biosensors #MMPMID32327916
  • Prajapati DG; Kandasubramanian B
  • Macromol Chem Phys 2019[May]; 220 (10): 1800561 PMID32327916show ga
  • Biosensors are analytical devices which find extensive applications in fields such as the food industry, defense sector, environmental monitoring, and in clinical diagnosis. Similarly, intrinsically conducting polymers (ICPs) and their composites have lured immense interest in bio-sensing due to their various attributes like compatibility with biological molecules, efficient electron transfer upon biochemical reactions, loading of bio-reagent, and immobilization of biomolecules. Further, they are proficient in sensing diverse biological species and compounds like glucose (detection limit approximately 0.18 nm), DNA ( approximately 10 pm), cholesterol ( approximately 1 microm), aptamer ( approximately 0.8 pm), and also cancer cells ( approximately 5 pm mL(-1)) making them a potential candidate for biological sensing functions. ICPs and their composites have been extensively exploited by researchers in the field of biosensors owing to these peculiarities; however, no consolidated literature on the usage of conducting polymer composites for biosensing functions is available. This review extensively elucidates on ICP composites and doped conjugated polymers for biosensing functions of copious biological species. In addition, a brief overview is provided on various forms of biosensors, their sensing mechanisms, and various methods of immobilizing biological species along with the life cycle assessment of biosensors for various biosensing applications, and their cost analysis.
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