2021
DOI: 10.1016/j.apmt.2021.101043
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2D transition metal dichalcogenide nanomaterial-based miRNA biosensors

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Cited by 8 publications
(7 citation statements)
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“…276 The nanoscale metal dichalcogenide can be used to develop biosensors to detect microRNAs. 277 The properties of these materials have been enhanced by incorporating and combining various metal ions into their structural framework. In this conjunction, recently, Vaghasiya et al 278 fabricated a wearable power patch to monitor the body's glucose level.…”
Section: Flexible and Wearable Biosensorsmentioning
confidence: 99%
“…276 The nanoscale metal dichalcogenide can be used to develop biosensors to detect microRNAs. 277 The properties of these materials have been enhanced by incorporating and combining various metal ions into their structural framework. In this conjunction, recently, Vaghasiya et al 278 fabricated a wearable power patch to monitor the body's glucose level.…”
Section: Flexible and Wearable Biosensorsmentioning
confidence: 99%
“…In another effort, Tellurium@Selenium core-shell heterojunction was fabricated by epitaxial growth Se on Te nanotubes (NTs), which demonstrated strong broadband linear and nonlinear optical response compared to pristine Te-NTs 62 . Other scholars comprehensively investigated the biosensing application of 2D layered materials and the impact of doping on biosensing functionality of these materials [63][64][65] . The enhancement of physicochemical properties of Se have been also extensively explored using its alloying with other compounds such as Te 66 .…”
Section: Selenium Properties and Their Potential In Enhanced Biosensi...mentioning
confidence: 99%
“…62 Other scholars comprehensively investigated the biosensing application of 2D layered materials and the impact of doping on biosensing functionality of these materials. [63][64][65] The enhancement of physicochemical properties of Se have been also extensively explored using its alloying with other compounds such as Te. 66 Functionalization of SeNPs can also transform their bandgap and make them promising candidates for optoelectronic devices.…”
Section: Review Materials Advancesmentioning
confidence: 99%
“…This technique replaces the samples from tissue to blood or body fluids and requires only a trace amount of biological sample [18][19][20]. For isolated liquid containing dissolved nucleic acids, mature medical detection methods such as RT-qPCR, Northern blotting and microarray analysis have been clinically applied [21][22][23]. Nevertheless, they are limited by low sensitivity, high cost, poor portability and long waiting periods before detection.…”
Section: Introductionmentioning
confidence: 99%