Abstract
Here we demonstrate high density that hydrogen nano-bubble (HNB) up to -3.45 wt"/o can be efficiently generated and stored via an electron radiolysis assisted abstraction reaction (RAAR) in an encapsulated quasi-2D water reservoir containing organic molecules. The gravimetric capacity and loss rate in our experiment are -3.45 wt% and 0.17(g/h)/kg, respectively in ambient condition, which fall closely to the OOE targets. A TEM equipped with a continuous flow holder with a quasi-2D water reservoir is utilized for in-situ generation and storage of HNB.
| Original language | English |
|---|---|
| Title of host publication | 21st International Conference on Miniaturized Systems for Chemistry and Life Sciences (MicroTAS 2017) |
| Publisher | Chemical and Biological Microsystems Society |
| Pages | 291-292 |
| ISBN (Print) | 9780692941836, 9781713802723 |
| Publication status | Published - Oct 2017 |
| Externally published | Yes |
| Event | 21st International Conference on Miniaturized Systems for Chemistry and Life Sciences (MicroTAS 2017) - Savannah, United States Duration: 22 Oct 2017 → 26 Oct 2017 https://archive.cbmsociety.org/utas/uTAS2017.zip |
Publication series
| Name | International Conference on Miniaturized Systems for Chemistry and Life Sciences, MicroTAS |
|---|
Conference
| Conference | 21st International Conference on Miniaturized Systems for Chemistry and Life Sciences (MicroTAS 2017) |
|---|---|
| Place | United States |
| City | Savannah |
| Period | 22/10/17 → 26/10/17 |
| Internet address |
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 7 Affordable and Clean Energy
Research Keywords
- Hydrogen
- In-situ TEM
- Nano Bubble
- Radiolysis
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