2020
DOI: 10.1002/adfm.202005238
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Retracted: Emerging 2D MXene/Organic Heterostructures for Future Nanodevices

Abstract: MXenes are a rapidly growing family of 2D materials. Their unique combination of metallic conductivity, hydrophilicity, and highly charged surfaces endow them with excellent electrochemical performance. Appropriate surface functional groups determine their semiconducting properties. The wide selection of various MXene structures and surface functional groups enable tunable work functions and bandgaps, making them prime candidates for many optoelectronic applications. In addition, the discovery of 2D organic se… Show more

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Cited by 27 publications
(12 citation statements)
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References 252 publications
(372 reference statements)
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“…Other reports focused on M 3 X 2 T x –MXene hybrids with other materials, including graphene‐based materials, metal oxides, and metal dichalcogenides for VOCs monitoring, have also been published. [ 53,184,185 ] However, the drawbacks associated with them have already been discussed in Section 2. The comparison among pristine MXenes, pristine polymers, MXP HNCs, and other hybrids of MXene and polymers‐based VOC monitoring performance has been made in Table 4 .…”
Section: Air Contaminant Monitoring Performance Of Mxp Hncsmentioning
confidence: 99%
“…Other reports focused on M 3 X 2 T x –MXene hybrids with other materials, including graphene‐based materials, metal oxides, and metal dichalcogenides for VOCs monitoring, have also been published. [ 53,184,185 ] However, the drawbacks associated with them have already been discussed in Section 2. The comparison among pristine MXenes, pristine polymers, MXP HNCs, and other hybrids of MXene and polymers‐based VOC monitoring performance has been made in Table 4 .…”
Section: Air Contaminant Monitoring Performance Of Mxp Hncsmentioning
confidence: 99%
“…The various synthesis approaches of 2D heterostructures directly affect their physical and chemical properties, thus affecting their application fields [ 65 ]. Generally, the deterministic transfer method and CVD epitaxial growth method are most often used to construct 2D heterostructures [ 66 ]. PDMS, PPC, and PMMA are commonly used in deterministic transfer methods.…”
Section: Fabrication Of Mxene-based Heterostructuresmentioning
confidence: 99%
“…Recently, a large family of 2D transition-metal carbides and nitrides named as MXene have emerged and received widespread attention owing to their hydrophilic surface functionalities (-OH, -O, and/or -F groups), high metallic conductivity (Ti 3 C 2 T x , ≈9880 S cm -1 ), easily tunable structure, and satisfactory thermal stability. [24][25][26] MXene has become the most potentially conductive material to anchor various active materials. First, the tunability of MXene composition is conducive to the modulation of electronic structure.…”
Section: Introductionmentioning
confidence: 99%