Few-layer black phosphorus (FL-BP) has been intensively studied due to its attractive properties and great potential in electronic and optoelectronic applications. However, the intrinsic instability of FL-BP greatly limits its practical application. In this study, the amphiphobic FL-BP is achieved by functionalization of 1 H ,1 H ,2 H ,2 H -perfluorooctyltrichlorosilane (PFDTS) on the surface of FL-BP. The obtained PFDTS coated FL-BP (FL-BP/PFDTS) demonstrates enhanced stability, which is not observed during significant degradation for 2 months in high moisture content environment (95% humidity). Particularly, attributing to the surface amphiphobicity, FL-BP/PFDTS exhibits strong surface water repellency in the presence of oleic acid (as th...
© 2017 The Author(s). The limited stability of the surface of black phosphorus (BP) under atmospheri...
Black phosphorus (bP) has been recently investigated for next generation nanoelectronic multifunctio...
Black phosphorus (BP) has extraordinary properties, but its ambient instability remains a critical c...
Few-layer black phosphorus (BP) is a new two-dimensional material which is of great interest for app...
Few-layer black phosphorous (BP) has emerged as a promising candidate for next-generation nanophoton...
Overcoming the intrinsic instability and preserving unique electronic properties are key challenges ...
Few-layer black phosphorus (BP) is an emerging material of interest for applications in electronics....
Two-dimensional (2D) materials have been studied widely owing to their outstanding properties since ...
Few-layer black phosphorus (BP) which exhibits excellent optical and electronic properties, has grea...
Unencapsulated, exfoliated black phosphorus (BP) flakes are found to chemically degrade upon exposur...
Layered black phosphorus (BP) has been expected to be a promising material for future electronic and...
© 2017 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Few-layer black phosphorous (BP) has emerged as a ...
Few-layer black phosphorus (BP) which exhibits excellent optical and electronic properties, has grea...
Black phosphorus (BP) has potential for fabricating p-type transistors in ultra-thin 2D-material com...
Amongst the different existing methods to passivate black phosphorus (BP) from environmental degrada...
© 2017 The Author(s). The limited stability of the surface of black phosphorus (BP) under atmospheri...
Black phosphorus (bP) has been recently investigated for next generation nanoelectronic multifunctio...
Black phosphorus (BP) has extraordinary properties, but its ambient instability remains a critical c...
Few-layer black phosphorus (BP) is a new two-dimensional material which is of great interest for app...
Few-layer black phosphorous (BP) has emerged as a promising candidate for next-generation nanophoton...
Overcoming the intrinsic instability and preserving unique electronic properties are key challenges ...
Few-layer black phosphorus (BP) is an emerging material of interest for applications in electronics....
Two-dimensional (2D) materials have been studied widely owing to their outstanding properties since ...
Few-layer black phosphorus (BP) which exhibits excellent optical and electronic properties, has grea...
Unencapsulated, exfoliated black phosphorus (BP) flakes are found to chemically degrade upon exposur...
Layered black phosphorus (BP) has been expected to be a promising material for future electronic and...
© 2017 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Few-layer black phosphorous (BP) has emerged as a ...
Few-layer black phosphorus (BP) which exhibits excellent optical and electronic properties, has grea...
Black phosphorus (BP) has potential for fabricating p-type transistors in ultra-thin 2D-material com...
Amongst the different existing methods to passivate black phosphorus (BP) from environmental degrada...
© 2017 The Author(s). The limited stability of the surface of black phosphorus (BP) under atmospheri...
Black phosphorus (bP) has been recently investigated for next generation nanoelectronic multifunctio...
Black phosphorus (BP) has extraordinary properties, but its ambient instability remains a critical c...