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As one of promising candidates for large‐scale energy‐storage systems, Zn‐I2 aqueous battery exhibits multifaceted advantages including low cost, high energy/powder density, and intrinsic operational safety, but also suffers from fast self‐discharge and short cycle/shelf lifespan associating with I3− shuttle, Zn dendrite growth, and corrosion. In this paper, the battery's self‐discharge rate is successfully...
Scaling up the chemical vapor deposition (CVD) of monolayer transition metal dichalcogenides (TMDCs) is in high demand for practical applications. However, for CVD‐grown TMDCs on a large scale, there are many existing factors that result in their poor uniformity. In particular, gas flow, which usually leads to inhomogeneous distributions of precursor concentrations, has yet to be well controlled....
Perforated Carbon Nanotube Films
In article number 2300766, Run Shi, Kai Liu, and co‐workers report a large‐scale growth of uniform monolayer MoS2 by evenly distributing gas flows of precursors through a perforated carbon nanotube film. The as‐grown monolayer MoS2 shows quite good uniformity in geometry, density, structure, and electrical properties.
Photothermal therapy (PTT) has been pre‐clinically used in cancer treatment, but incomplete tumor removal and heat endurance of tumor cells could induce significant tumor relapse. In article number 1902636, Xiaolong Liu, Jingfeng Liu, and co‐workers report a programmable antitumor strategy that combines artificially engineered natural killer cells with anti‐heat endurance of DNAzyme as a powerful...
Although photothermal therapy (PTT) is preclinically applied in solid tumor treatment, incomplete tumor removal of PTT and heat endurance of tumor cells induces significant tumor relapse after treatment, therefore lowering the therapeutic efficiency of PTT. Herein, a programmable therapeutic strategy that integrates photothermal therapeutic agents (PTAs), DNAzymes, and artificial engineered natural...
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