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The authors proposed a novel template‐free strategy, urease‐mediated interfacial growth of NH4Ga(OH)2CO3 nanotubes at 20–50 °C, to fabricate the porous Ga2O3 nanotubes. The subtlety of the proposed strategy is all the products from urea enzymolysis are utilized in formation of NH4Ga(OH)2CO3 precipitates, and the key for interfacial growth of NH4Ga(OH)2CO3 nanotubes is the dynamic match between the...
Bi2Te3 has attracted great attention because of its excellent thermoelectric (TE) performance around room temperature. However, the TE property of the n‐type Bi2Te3 is still relatively low compared to the p‐type counterpart, which seriously hinders its commercial application with a combination of the n‐type and p‐type materials. Herein, an effective process of Cl and W co‐doping is employed into the...
1D silicon‐based nanomaterials, renowned for their unique chemical and physical properties, have enabled the development of numerous advanced materials and biomedical technologies. Their production often necessitates complex and expensive equipment, requires hazardous precursors and demanding experimental conditions, and involves lengthy processes. Herein, a flash solid–solid (FSS) process is presented...
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