25th Anniversary Article: Chemically Modified/Doped Carbon Nanotubes & Graphene for Optimized Nanostructures & Nanodevices
Статья к 25-летнему юбилею: химически модифицированные/легированные углеродные нанотрубки и графен для оптимизированных наноструктур и наноустройств
2013-10-14
SCID: 54.1/pdcx3wye
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carbon nanotubeschemical dopingelectronic energy levelsenergy conversion and storagegraphene
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Abstract (AI)
Outstanding pristine properties of carbon nanotubes and graphene have limited the scope for real-life applications without precise controllability of the material structures and properties. This invited article to celebrate the 25th anniversary of Advanced Materials reviews the current research status in the chemical modification/doping of carbon nanotubes and graphene and their relevant applications with optimized structures and properties. A broad aspect of specific correlations between chemical modification/doping schemes of the graphitic carbons with their novel tunable material properties is summarized. An overview of the practical benefits from chemical modification/doping, including the controllability of electronic energy level, charge carrier density, surface energy and surface reactivity for diverse advanced applications is presented, namely flexible electronics/optoelectronics, energy conversion/storage, nanocomposites, and environmental remediation, with a particular emphasis on their optimized interfacial structures and properties. Future research direction is also proposed to surpass existing technological bottlenecks and realize idealized graphitic carbon applications.
Key Findings
1
Chemical modification and doping are presented as essential strategies for overcoming the limited practical controllability of pristine carbon nanotubes and graphene.
2
Chemical modification/doping enables control over electronic energy levels, charge-carrier density, surface energy, and surface reactivity.
3
The article identifies future research directions aimed at overcoming technological bottlenecks and enabling broader practical use of graphitic carbon materials.
4
The review correlates specific chemical modification and doping schemes with tunable electronic, surface, and interfacial properties of graphitic carbons.
5
These optimized properties support applications in flexible electronics and optoelectronics, energy conversion and storage, nanocomposites, and environmental remediation.
Research Object
Chemically modified/doped carbon nanotubes and graphene
Research Subject
Correlations between chemical modification/doping schemes and tunable material properties, including electronic energy levels, charge-carrier density, surface energy, surface reactivity, and interfacial structures for advanced applications
Publication Details
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2013-10-14
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