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Micro‐Supercapacitors
In article number 2207634, Hui Ying Yang and co‐workers develop an innovative stretchable micro‐supercapacitor with excellent resistance to freezing. Using digital light processing (DLP) 3D printing technology, an interdigital electrode with octet‐truss lattice structure has been designed to enhance the electrochemical performance of the micro‐supercapacitor. It is anticipated...
Recently, stretchable micro‐supercapacitors (MSCs) that can be easily integrated into electronic devices have attracted research and industrial attentions. In this work, three‐dimensional (3D) stretchable MSCs with an octet‐truss electrode (OTE) design have been demonstrated by a rapid digital light processing (DLP) process. The 3D‐printed electrode structure is beneficial for electrode‐electrolyte...
Achieving fast transmembrane transmission of molecules in organisms is a challenging problem. Inspired by the transport of Dopmine (DA) in organisms, the DA transporter (DAT) binds to DA in a way that has a ring recognition (the recognition group is the tryptophan group). Herein, D‐Tryptophan‐pillar[5]arene (D‐Trp‐P5) functionalized conical nanochannel is constructed to achieve fast transmission of...
Transparent glass with metal mesh is considered a promising strategy for high performance transparent glass heaters (TGHs). However, the realization of simple, low‐cost manufacture of high performance TGHs still faces great challenges. Here, a technique for the fabrication of high performance TGHs is proposed using liquid sacrificial substrate electric‐field‐driven (LS‐EFD) microscale 3D printing...
Transparent Glass Heaters
In article number 2107811, Xiaoyang Zhu, Xiaofeng Xu, Hongbo Lan, and co‐workers develop a fabrication method of silver mesh for transparent glass heaters (TGHs) via liquid sacrificial substrate electric‐field‐driven microscale 3D printing thick film silver paste. The fabricated TGHs exhibit excellent comprehensive performance. Furthermore, an interface evaporator is demonstrated...
Pathogenic infections seriously threaten public health and have been considered as one of the most critical challenges in clinical therapy. Construction of a safe and efficient photothermal antibacterial platform is a promising strategy for treatment of bacterial infections. Considering that high temperature does harm to the normal tissues and cells, herein, a bacteria‐triggered multifunctional hydrogel...
2D materials (TDMs) have been explored for photonic theranostics. To achieve deep‐tissue penetration, near‐infrared (NIR) light is essential for photoacoustic (PA) theranostics. However, because the absorption profiles of existing TDMs are generally featureless with no obvious NIR absorption peaks, their PA signals and therapeutic efficacies are limited. This paper herein reports the synthesis and...
A multifunctional theranostic platform based on conjugated polymer nanoparticles (CPNs) with tumor targeting, fluorescence detection, photodynamic therapy (PDT), and photothermal therapy (PTT) is developed for effective cancer imaging and therapy. Two conjugated polymers, poly[9,9‐bis(2‐(2‐(2‐methoxyethoxy)ethoxy)‐ethyl)fluorenyldivinylene]‐alt‐4,7‐(2,1,3‐benzothiadiazole) with bright red emission...
Multifunctional conjugated polymer nanoparticles (CPNs) are developed for image‐guided phototherapy by D. Ding, B. Liu, and co‐workers in article number 1602807. Under proper light irradiation, these CPNs display bright red fluorescence, efficient singlet oxygen generation and excellent photothermal conversion abilities. With affibody decoration, these CPNs show excellent tumor targeting and synergistic...
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