DNA machinery represents a burgeoning frontier at the intersection of robotics and nanotechnology, evolving from static nanostructure toward dynamic nanorobots. Here, the authors review the comprehensive research pipeline of designer DNA‐based nanomachines, covering the design, analysis, and fabrication. These programmable systems enable transformative
Yiquan An +5 more
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Designable excitonic effects in van der Waals artificial crystals with exponentially growing thickness. [PDF]
Sun Q +13 more
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Enhancing the Chemical Reactivity of Graphene through Substrate Engineering
This review highlights methods to enhance the reactivity of graphene through substrate engineering, focusing on strain and charge doping. Strains induced by nanoparticles, metal crystal orientations, or stretchable polymers increase the reactivity of graphene.
Jia Tu, Mingdi Yan
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Macroscale-area patterning of three-dimensional DNA-programmable frameworks. [PDF]
Teng F +10 more
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Growth and fabrication of InAs/GaSb type II superlattice mid-wavelength infrared photodetectors. [PDF]
Chen J +5 more
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Tailored sandwich‐type COF heterojunctions achieve optimal capacitance and energy density through H⁺ ion lamination and π‐electron conduction, demonstrating the potential for miniaturized and flexible energy storage devices. Abstract Covalent organic frameworks (COFs) nanofilms with well‐ordered channels and highly active interfaces have great ...
Xiaoyang Xu +8 more
wiley +1 more source
Superstructural phase transitions in polymer-grafted nanooctahedra. [PDF]
Zhu B +11 more
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High‐Voltage Cathode Materials for Sodium‐Ion Batteries: Advances and Challenges
This review explores the role of high‐voltage cathode materials in enhancing the performance of SIBs. It focuses on strategies to improve energy density, rate capacity, and stability, addressing challenges like phase transitions, metal migration, and electrolyte degradation.
Congqi Ren, Yulian Dong, Yong Lei
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Cooperative Jahn-Teller effect and engineered long-range strain in manganese oxide/graphene superlattice for aqueous zinc-ion batteries. [PDF]
Wang S +13 more
europepmc +1 more source
Interface‐Engineered Bi0.5Sb1.5Te3/WSe2 Heterostructures for Enhanced Thermoelectric Performance
BST/WSe2 heterostructures grown by pulsed laser deposition exhibit semicoherent van der Waals interfaces, characterized by lattice strain, compressed gaps, and localized moiré patterns. These interfacial features modulate carrier generation and energy filtering, yielding high Seebeck coefficients and a consistently high power factor above 50 µW cm−1 K ...
Karan Giri +3 more
wiley +1 more source

