2022
DOI: 10.1002/cnma.202200462
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Nanoarchitectonics for Free‐Standing Polyelectrolyte Multilayers Films: Exploring the Flipped Surfaces

Abstract: The competency of polyelectrolyte multilayer films (PEM) self-assembly to modulate the surface architecture at the molecular level has emerged as a captivating technique for various biomedical applications. PEM advancement in bioapplications covered the development of bio-sensors, stimuliresponsive drug-delivery systems, surface modification for creating antibacterial surfaces, and tissue-engineering architectures. Different PEM blends, from natural to synthetic ones, have been explored to make a free-standing… Show more

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Cited by 6 publications
(5 citation statements)
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References 166 publications
(528 reference statements)
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“…15 This methodology is not bound by material or application objectives and can be applied to a wide variety of objects. In fact, recent papers advocating nanoarchitectonics include multiple topics ranging from material synthesis, 16 structure control, 17 fundamental physical phenomena, 18 and biochemistry-related research 19 to applications such as catalysts, 20 sensors, 21 devices, 22 energy, 23 environment, 24 and biomedical research. 25 Since materials are originally formed from atoms and molecules, nanoarchitectonics, which architects functional materials from atoms and molecules, can be applied to all materials.…”
Section: Introductionmentioning
confidence: 99%
“…15 This methodology is not bound by material or application objectives and can be applied to a wide variety of objects. In fact, recent papers advocating nanoarchitectonics include multiple topics ranging from material synthesis, 16 structure control, 17 fundamental physical phenomena, 18 and biochemistry-related research 19 to applications such as catalysts, 20 sensors, 21 devices, 22 energy, 23 environment, 24 and biomedical research. 25 Since materials are originally formed from atoms and molecules, nanoarchitectonics, which architects functional materials from atoms and molecules, can be applied to all materials.…”
Section: Introductionmentioning
confidence: 99%
“…The research papers that claim to be nanoarchitectonics are as follows. The application of nanoarchitectonics can be seen in basic fields, such as the synthesis of functional materials [ 204 , 205 , 206 , 207 , 208 , 209 , 210 , 211 , 212 , 213 , 214 , 215 , 216 , 217 , 218 , 219 ], the control of specific structures [ 220 , 221 , 222 , 223 , 224 , 225 , 226 , 227 , 228 , 229 , 230 ], the creation of structures [ 231 , 232 , 233 , 234 , 235 , 236 , 237 , 238 , 239 , 240 ], basic physics [ 241 , 242 , 243 , 244 , 245 , 246 , 247 , 248 , 249 , 250 , 251 , 252 ], relatively basic biochemistry [ 253 , 254 ,…”
Section: Introductionmentioning
confidence: 99%
“…The research papers that claim to be nanoarchitectonics are as follows. The application of nanoarchitectonics can be seen in basic fields, such as the synthesis of functional materials [204][205][206][207][208][209][210][211][212][213][214][215][216][217][218][219], the control of specific structures [220][221][222][223][224][225][226][227][228][229][230], the creation of structures [231][232][233][234][235][236][237][238][239][240], basic physics [241][242][243][244][245][246][247][248][249][250][251][252]<...…”
Section: Introductionmentioning
confidence: 99%
“…In fact, the research papers advocating nanoarchitectonics have a very wide range of material processes and applications. In basic fields, nanoarchitectonics can be applied to material synthesis [135][136][137][138][139][140][141], microstructure control [142][143][144][145][146][147][148][149], the elucidation of physical phenomena [150][151][152][153][154][155], and basic life science research [156][157][158][159][160][161]. In the applicationoriented fields, there are reports of applications in catalysis [162][163][164][165][166][167], sensors [168][169][170][171][172], devices [173][174][175][176][177][178], energy generation [179][180][181...…”
Section: Introductionmentioning
confidence: 99%