2022
DOI: 10.1039/d2na00203e
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Nanoarchitectonics for conductive polymers using solid and vapor phases

Abstract: Conductive polymers have been extensively studied as functional organic materials for their broad range of applications. Conductive polymers, such as polypyrrole, polythiophene, and their derivatives, are typically obtained as the...

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Cited by 19 publications
(13 citation statements)
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“…Many studies advocating nanoarchitectonics are related to the chemistry and bio-chemical fields. For example, in the areas of material creation, [90,91] structural control, [92,93] catalysis, [94,95] sensors, [96,97] basic bio-chemistry, [98,99] biomedical, [100,101] energy, [102,103] and environment. [104,105] However, since nanoarchitectonics is a method of architecting functional structures with a high degree of generality, it should have contributions that are independent of chemistry, physics, and biology.…”
Section: Summary and Short Perspectivesmentioning
confidence: 99%
“…Many studies advocating nanoarchitectonics are related to the chemistry and bio-chemical fields. For example, in the areas of material creation, [90,91] structural control, [92,93] catalysis, [94,95] sensors, [96,97] basic bio-chemistry, [98,99] biomedical, [100,101] energy, [102,103] and environment. [104,105] However, since nanoarchitectonics is a method of architecting functional structures with a high degree of generality, it should have contributions that are independent of chemistry, physics, and biology.…”
Section: Summary and Short Perspectivesmentioning
confidence: 99%
“…[1][2][3][4][5][6][7][8][9] Our group has proposed an amorphous conjugated polymer network as a new type of assembly state. [10][11][12] Specic structures have impact on the enhanced performances in energy-related applications. 10,11 Simultaneous reactions of two or more monomers in multiple directions form random networks of the conjugated structures and their noncrystalline stackings, as shown in Fig.…”
Section: Introductionmentioning
confidence: 99%
“…Therefore, when building materials from nanoscale units, these uncertainties are included to harmonize the various effects [55,56]. Recent publications advocating nanoarchitectonics show that it is widely applied in academic fields such as materials synthesis [57][58][59], structural control [60][61][62][63], physical phenomena [64][65][66], and basic biochemistry [67][68][69], as well as in applied fields such as catalysis [70][71][72], sensors [73][74][75], devices [76][77][78], energy [79][80][81], environment [82][83][84][85], and medicine [86][87][88][89]. Since all the materials are composed of atoms and molecules, nanoarchitectonics is considered a universal unified concept that can be applied to all targets.…”
Section: Review Introductionmentioning
confidence: 99%