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- W3048842479 endingPage "141" @default.
- W3048842479 startingPage "117" @default.
- W3048842479 abstract "The increasing demand for bioassays and biomedical applications has considerably encouraged the development and fabrication of a wide range of functional nanomaterials. Pairing these functional nanomaterials with biomolecular recognition events leads to the development of unique sensing and diagnostic platforms. Owing to their extraordinary electrical, chemical, optical, mechanical, and structural properties, of two-dimensional (2D) materials have attracted the attention of researchers in the development of various optical biosensors. These 2D materials possess key characteristics that are helpful for developing high-performance sensing platforms such as high surface area-to-volume ratios and sensitivity of the surface to the external environment. 2D materials (such as graphene and graphene like materials) can behave as either fluorescent emitters or efficient fluorescence quenchers; thus, they can be employed as powerful platforms for the development of various optical biosensor-based on fluorescence techniques for selective detection of various biologically important analytes such as ions, small molecules, nucleic acids, proteins, and cancer biomarker targets. Fluorescence-based sensors are associated with high efficiency, selectivity, sensitivity, reliability, repeatability, low cost, and ease of operation. This chapter highlights the application of 2D materials for the fabrication of optical biosensors based on fluorescence spectroscopy." @default.
- W3048842479 created "2020-08-18" @default.
- W3048842479 creator A5021297581 @default.
- W3048842479 date "2020-01-01" @default.
- W3048842479 modified "2023-10-08" @default.
- W3048842479 title "Application of 2D Nanomaterials as Fluorescent Biosensors" @default.
- W3048842479 cites W1967517614 @default.
- W3048842479 cites W1969757013 @default.
- W3048842479 cites W1973247082 @default.
- W3048842479 cites W1976423872 @default.
- W3048842479 cites W1977769329 @default.
- W3048842479 cites W1982636587 @default.
- W3048842479 cites W1983190601 @default.
- W3048842479 cites W1986585549 @default.
- W3048842479 cites W1988571945 @default.
- W3048842479 cites W1989528917 @default.
- W3048842479 cites W1990623169 @default.
- W3048842479 cites W1992992522 @default.
- W3048842479 cites W1995713813 @default.
- W3048842479 cites W1998704602 @default.
- W3048842479 cites W1999772684 @default.
- W3048842479 cites W2006666241 @default.
- W3048842479 cites W2007914464 @default.
- W3048842479 cites W2008882088 @default.
- W3048842479 cites W2011115824 @default.
- W3048842479 cites W2012587360 @default.
- W3048842479 cites W2014407961 @default.
- W3048842479 cites W2022444637 @default.
- W3048842479 cites W2024175318 @default.
- W3048842479 cites W2026425505 @default.
- W3048842479 cites W2031080152 @default.
- W3048842479 cites W2031271824 @default.
- W3048842479 cites W2034714068 @default.
- W3048842479 cites W2036759295 @default.
- W3048842479 cites W2042412649 @default.
- W3048842479 cites W2045224025 @default.
- W3048842479 cites W2045351638 @default.
- W3048842479 cites W2051080992 @default.
- W3048842479 cites W2051699902 @default.
- W3048842479 cites W2051809300 @default.
- W3048842479 cites W2053698341 @default.
- W3048842479 cites W2058122340 @default.
- W3048842479 cites W2059821596 @default.
- W3048842479 cites W2063681593 @default.
- W3048842479 cites W2065472880 @default.
- W3048842479 cites W2070040865 @default.
- W3048842479 cites W2075151456 @default.
- W3048842479 cites W2076882807 @default.
- W3048842479 cites W2080490029 @default.
- W3048842479 cites W2082572892 @default.
- W3048842479 cites W2082998723 @default.
- W3048842479 cites W2090307126 @default.
- W3048842479 cites W2093002330 @default.
- W3048842479 cites W2093220751 @default.
- W3048842479 cites W2098984543 @default.
- W3048842479 cites W2100680127 @default.
- W3048842479 cites W2101506543 @default.
- W3048842479 cites W2102953411 @default.
- W3048842479 cites W2104586355 @default.
- W3048842479 cites W2109357726 @default.
- W3048842479 cites W2109783713 @default.
- W3048842479 cites W2112075379 @default.
- W3048842479 cites W2115568341 @default.
- W3048842479 cites W2128822335 @default.
- W3048842479 cites W2135627479 @default.
- W3048842479 cites W2138183388 @default.
- W3048842479 cites W2143885018 @default.
- W3048842479 cites W2162070411 @default.
- W3048842479 cites W2163980958 @default.
- W3048842479 cites W2165997684 @default.
- W3048842479 cites W2166843487 @default.
- W3048842479 cites W2168468492 @default.
- W3048842479 cites W2239496939 @default.
- W3048842479 cites W2300773795 @default.
- W3048842479 cites W2316445470 @default.
- W3048842479 cites W2318412789 @default.
- W3048842479 cites W2320333638 @default.
- W3048842479 cites W2328485224 @default.
- W3048842479 cites W2328578385 @default.
- W3048842479 cites W2328911991 @default.
- W3048842479 cites W2330734534 @default.
- W3048842479 cites W2330912530 @default.
- W3048842479 cites W2374290597 @default.
- W3048842479 cites W2623831325 @default.
- W3048842479 cites W2690468304 @default.
- W3048842479 cites W2738698491 @default.
- W3048842479 cites W2763766590 @default.
- W3048842479 cites W2790904608 @default.
- W3048842479 cites W2809999967 @default.
- W3048842479 cites W2811503217 @default.
- W3048842479 cites W2947770868 @default.
- W3048842479 cites W2981207143 @default.
- W3048842479 cites W2999043780 @default.
- W3048842479 cites W3105765820 @default.
- W3048842479 cites W4232319650 @default.
- W3048842479 cites W584789746 @default.
- W3048842479 cites W850626500 @default.
- W3048842479 doi "https://doi.org/10.1021/bk-2020-1353.ch006" @default.