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10.3389/fchem.2021.706917
This work provides insightful understandings of the surface-aging-dependent interactions of the MoS2 nanosheets with biomembranes, which could facilitate the design of novel MoS2-based nanodevices with advanced surface properties.
This work provides insightful understandings of the surface-aging-dependent interactions of the MoS2 nanosheets with biomembranes, which could facilitate the design of novel MoS2-based nanodevices with advanced surface properties.
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10.1016/J.MSEB.2021.115215
The biosensor was tested in the presence of dopamine and ascorbic acid and our results presented the high selectivity of this novel MoS2/Chitosan/GOx-Gelatin modified PGE as a glucose biosensor.
The biosensor was tested in the presence of dopamine and ascorbic acid and our results presented the high selectivity of this novel MoS2/Chitosan/GOx-Gelatin modified PGE as a glucose biosensor.
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10.1016/J.MOLSTRUC.2021.131240
Novel MoS2 nanobelts (NBs) decorated highly ordered alignment TiO2 nanotubes arrays (TiO2-NTAs) with promoted photoelectrocatalytic (PEC) photodegradation and sensing performance under UV-Visible light irradiation were successfully synthesized via a facile combination of anodization and electrodeposition procedure.
Novel MoS2 nanobelts (NBs) decorated highly ordered alignment TiO2 nanotubes arrays (TiO2-NTAs) with promoted photoelectrocatalytic (PEC) photodegradation and sensing performance under UV-Visible light irradiation were successfully synthesized via a facile combination of anodization and electrodeposition procedure.
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10.1016/J.COLSURFA.2021.126721
Herein, novel MoS2/FeVO4 nanorods composites were synthesized successfully via ionic liquid 1-octyl-3-methylimidazolium chloride ([OMim]Cl) assisted hydrothermal process.
Herein, novel MoS2/FeVO4 nanorods composites were synthesized successfully via ionic liquid 1-octyl-3-methylimidazolium chloride ([OMim]Cl) assisted hydrothermal process.
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10.1016/b978-0-12-821859-4.00017-9
Then, the application of this novel MoS2 and MoS2-based nanocomposites for photocatalytic water splitting and CO2 reduction into hydrocarbon fuels and pollution abatement is also involved and discussed in detail.
Then, the application of this novel MoS2 and MoS2-based nanocomposites for photocatalytic water splitting and CO2 reduction into hydrocarbon fuels and pollution abatement is also involved and discussed in detail.
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10.1016/J.MATERRESBULL.2021.111279
In this study, a novel MoS2@bentonite magnetic nanocomposite (M-MoS2@bentoniteNC) was synthesized using a new, simple, and one-step process to remove crystal violet (CV).
In this study, a novel MoS2@bentonite magnetic nanocomposite (M-MoS2@bentoniteNC) was synthesized using a new, simple, and one-step process to remove crystal violet (CV).
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10.1063/5.0050118
In this Perspective, recent development on the fabrication of novel MoS2 nanostructures was discussed, followed by the scrutinization of their application in beyond lithium-ion batteries and the in situ/operando methods involved in these studies.
In this Perspective, recent development on the fabrication of novel MoS2 nanostructures was discussed, followed by the scrutinization of their application in beyond lithium-ion batteries and the in situ/operando methods involved in these studies.
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10.1007/s40005-021-00539-7
This study developed a novel MoS2 nanoflakes platform for the drug delivery (erythromycin) into the skin.
This study developed a novel MoS2 nanoflakes platform for the drug delivery (erythromycin) into the skin.
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10.1016/j.nanoen.2020.105692
Here, we report a novel MoS2 nonvolatile memory combined with nanographene as floating gate realize multilevel storage state triggerd by both mechanical and optical stimulation without applying extra gate voltages.
Here, we report a novel MoS2 nonvolatile memory combined with nanographene as floating gate realize multilevel storage state triggerd by both mechanical and optical stimulation without applying extra gate voltages.
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10.1002/adma.202007480
Therefore, this novel MoS2 /graphene nanocomposite exhibits exceptional high-rate capability (285.
Therefore, this novel MoS2 /graphene nanocomposite exhibits exceptional high-rate capability (285.
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10.1039/D1RA90092G
Correction for ‘In-depth first-principle study on novel MoS2 polymorphs’ by Håkon Eidsvåg et al.
Correction for ‘In-depth first-principle study on novel MoS2 polymorphs’ by Håkon Eidsvåg et al.
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10.1364/OE.27.002305
The light absorption of a hybrid novel MoS2-based nanostructure is theoretically investigated by using the finite-difference time-domain (FDTD) simulations, and high-efficiency broadband absorption is achieved in the visible wavelength region.
The light absorption of a hybrid novel MoS2-based nanostructure is theoretically investigated by using the finite-difference time-domain (FDTD) simulations, and high-efficiency broadband absorption is achieved in the visible wavelength region.
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10.1016/J.CEJ.2019.05.174
Herein, we report a novel MoS2/Cu nanowires (NWs) by microwave-assisted self-assembly of ultrathin 1T MoS2 onto Cu NWs with interconnected conductive network and robust one-dimensional (1D) structure.
Herein, we report a novel MoS2/Cu nanowires (NWs) by microwave-assisted self-assembly of ultrathin 1T MoS2 onto Cu NWs with interconnected conductive network and robust one-dimensional (1D) structure.
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10.1016/J.APSUSC.2019.02.030
A novel MoS2-coated ZnO heterostructure grown onto stainless steel substrate was successfully realized via an original two-step electrodeposition process.
A novel MoS2-coated ZnO heterostructure grown onto stainless steel substrate was successfully realized via an original two-step electrodeposition process.
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10.1039/C8TC04097D
In the present study, novel MoS2 bilayers with 3D structures were considered for their application as wavelength-sensitive photodetectors.
In the present study, novel MoS2 bilayers with 3D structures were considered for their application as wavelength-sensitive photodetectors.
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10.1016/J.IJHYDENE.2019.05.004
Given the efficient, HER activity displayed by the novel MoS2-g-CuNi2S4/SPE electrochemical platform and the comparatively low associated cost of production for this nanocomposite, it has potential to be a cost-effective alternative to Pt within electrolyser technologies.
Given the efficient, HER activity displayed by the novel MoS2-g-CuNi2S4/SPE electrochemical platform and the comparatively low associated cost of production for this nanocomposite, it has potential to be a cost-effective alternative to Pt within electrolyser technologies.
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10.1016/J.APCATB.2019.01.073
A novel MoS2 quantum dots (QDs) decorated g-C3N4 nanosheet/N-doped carbon dots (NCDS) heterojunction photocatalyst was successfully synthesized by thermal polymerization and subsequent solvothermal approach.
A novel MoS2 quantum dots (QDs) decorated g-C3N4 nanosheet/N-doped carbon dots (NCDS) heterojunction photocatalyst was successfully synthesized by thermal polymerization and subsequent solvothermal approach.
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10.1016/J.JELECHEM.2019.03.058
Here, we present a novel MoS2 microsphere@ N-doped carbon composites as anode in LIBs.
Here, we present a novel MoS2 microsphere@ N-doped carbon composites as anode in LIBs.
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10.1109/EDSSC.2019.8754142
The results will provide a useful guide to design the novel MoS2 semiconductor devices.
The results will provide a useful guide to design the novel MoS2 semiconductor devices.
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10.1007/s42114-019-0075-4
We introduce a facile one-step microwave solid-state approach to prepare novel MoS2/MoO3 @graphite nanocomposite that can be utilized as an electrode material for supercapacitors.
We introduce a facile one-step microwave solid-state approach to prepare novel MoS2/MoO3 @graphite nanocomposite that can be utilized as an electrode material for supercapacitors.
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10.1016/J.MATERRESBULL.2019.04.034
The DSSC with novel MoS2/rGO CE achieves a higher power conversion efficiency of 6.
The DSSC with novel MoS2/rGO CE achieves a higher power conversion efficiency of 6.
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10.1016/j.bios.2019.02.066
Here, we present novel MoS2-integrated silica colloidal crystal barcode (SCCB) for multiplex microRNA (miRNA) screening.
Here, we present novel MoS2-integrated silica colloidal crystal barcode (SCCB) for multiplex microRNA (miRNA) screening.
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10.1016/J.APMT.2018.12.003
Adsorption of amino acids on a MoS2 surface allows their chemical information to be transformed into distinct analytically optical and electronic signals, which opens up new possibilities for fabricating novel MoS2 based highly selective biosensors.
Adsorption of amino acids on a MoS2 surface allows their chemical information to be transformed into distinct analytically optical and electronic signals, which opens up new possibilities for fabricating novel MoS2 based highly selective biosensors.
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10.1007/s10854-019-01652-y
A novel MoS2/TiO2/reduced graphene oxide (MoS2/TiO2/rGO) hybrid photocatalyst was prepared via a two-step hydrothermal process.
A novel MoS2/TiO2/reduced graphene oxide (MoS2/TiO2/rGO) hybrid photocatalyst was prepared via a two-step hydrothermal process.
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