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We have also explored new designs, synthesis, and progress in the field of core-substituted naphthalene diimides (cNDIs), and their implications in areas such as artificial photosynthesis and solar cell technology.
In this article, we have discussed the recently developed synthetic routes to amplify the electron-poor nature of the naphthalenediimides (NDIs) as well as the integration of electron-rich donor groups towards ambipolar and strongly electron donating NDIs.
This comprehensive review surveys developments over the past decade in the field of naphthalene diimides (NDIs). It explores their application toward: supramolecular chemistry; sensors; host-guest complexes for molecular switching devices, such as catenanes and rotaxanes; ion-channels by ligand gati …
This Review provides an overview on different approaches towards core functionalization as well as on synthetic strategies for the core expansion of naphthalene diimides that have been developed mainly in the last five years.
This account describes recent developments in the structures, synthesis, properties, and applications of π-extended naphthalene diimides, including pure-carbon and heterocyclic acene diimides, from our research group.
NDIs can be functionalized through imide and/or core substitution (2,6- or 2,3,6,7- to the core) producing NDI analogues whose absorption and fluorescence properties are variable.
In this review, we describe the developments in the field of naphthalene diimides (NDIs) from 2016 to the presentday. NDIs are shown to be an increasingly interesting class of molecules due to their electronic properties, large electron deficient aromatic cores and tendency to self-assemble into functional s
Naphthalene diimide (NDI) derivatives have been synthesized via facile synthesis process and comprehensively studied their photophysical, thermal-activated conductivity and electron transport properties.
Water-soluble Naphthalene diimide (NDI) binds to the DNA duplex via threading intercalation mode. This has provided unique DNA analytical techniques, functional DNA polymers, and supramolecular...
A large number of water-soluble naphthalene diimides (NDIs) bearing an electron-withdrawing chloro and electron-donating amino-substituents with varied electronic character at the core were synthesized by a two-step synthetic approach comprising imidization of 2,6-dichloronaphthalene dianhydride with l-gluta