
Most recent update: 2023-05-11 20:44:01
The keywords that frequently used in this topics code. | Keywords | Number | |
|---|---|---|---|
| Dispersed AgNPs | 1 | ||
| shell thickness control | 1 | ||
| battery | 1 | ||
| mesoporous silica | 1 | ||
| friction | 1 | ||
| Nanofibers | 1 | ||
| copper-matrix composite | 1 | ||
| graphite | 1 | ||
| poly(3-hydroxybutyrate-co-3-hydroxyhexanoate);PHBH | 1 | ||
| core-shell particle | 1 | ||
| Fast scanning calorimetry;FSC | 1 | ||
| melt memory effect | 1 | ||
| Ultrasonic-Assisted Electrospinning | 1 | ||
| carbon nanotube | 1 | ||
| plasma | 1 | ||
| ACKN No. | Title/Author(s) | Keywords | Style |
|---|---|---|---|
| 116 | PVP/Highly Dispersed AgNPs Nanofibers Using Ultrasonic-Assisted Electrospinning | Ultrasonic-Assisted Electrospinning Dispersed AgNPs Nanofibers | O |
| 379 | The effect of electrolyte addition on the thickness of mesoporous silica shell formed on a silica core | core-shell particle mesoporous silica shell thickness control | P |
| 562 | Preparation of self-lubricating copper matrix composites and analysis of their sliding properties | graphite copper-matrix composite friction | O |
| 700 | Acceleration of PHBH crystallization process using melt memory effect | poly(3-hydroxybutyrate-co-3-hydroxyhexanoate);PHBH melt memory effect Fast scanning calorimetry;FSC | P |
| 721 | The electrode of Zn-air battery using plasma-treated carbon nanotube to | battery carbon nanotube plasma | O |
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