nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
A high-voltage and stable zinc-air battery enabled by dual-hydrophobic-induced proton shuttle shielding
|
Cui, Yang-feng |
|
|
6 |
7 |
p. 1617-1631 |
artikel |
2 |
A solar tower fuel plant for the thermochemical production of kerosene from H2O and CO2
|
Zoller, Stefan |
|
|
6 |
7 |
p. 1606-1616 |
artikel |
3 |
Battery calendar aging and machine learning
|
Dufek, Eric J. |
|
|
6 |
7 |
p. 1363-1367 |
artikel |
4 |
Bifacial perovskite/silicon tandem solar cells
|
De Bastiani, Michele |
|
|
6 |
7 |
p. 1431-1445 |
artikel |
5 |
Biofuels from biomass toward a net-zero carbon and sustainable world
|
Tan, Xinyi |
|
|
6 |
7 |
p. 1396-1399 |
artikel |
6 |
Biosynthesis of polycyclopropanated high energy biofuels
|
Cruz-Morales, Pablo |
|
|
6 |
7 |
p. 1590-1605 |
artikel |
7 |
Dehumidification with solid hygroscopic sorbents for low-carbon air conditioning
|
Poredoš, Primož |
|
|
6 |
7 |
p. 1390-1393 |
artikel |
8 |
Design principles for zero-strain Li-ion cathodes
|
Zhao, Xinye |
|
|
6 |
7 |
p. 1654-1671 |
artikel |
9 |
Embodied energy and carbon from the manufacture of cadmium telluride and silicon photovoltaics
|
Wikoff, Hope M. |
|
|
6 |
7 |
p. 1710-1725 |
artikel |
10 |
Long-term implications of reduced gas imports on the decarbonization of the European energy system
|
Pedersen, Tim Tørnes |
|
|
6 |
7 |
p. 1566-1580 |
artikel |
11 |
Microbially catalyzed bioelectrochemical power devices come of age
|
Pant, Deepak |
|
|
6 |
7 |
p. 1399-1401 |
artikel |
12 |
Multilevel peel-off patterning of a prototype semitransparent organic photovoltaic module
|
Huang, Xinjing |
|
|
6 |
7 |
p. 1581-1589 |
artikel |
13 |
Nanoscopic impurities trigger perovskite degradation
|
Hao, Mingwei |
|
|
6 |
7 |
p. 1402-1404 |
artikel |
14 |
Overcoming the disconnect between energy system and climate modeling
|
Craig, Michael T. |
|
|
6 |
7 |
p. 1405-1417 |
artikel |
15 |
Perovskite solar cells for building integrated photovoltaics—glazing applications
|
Bing, Jueming |
|
|
6 |
7 |
p. 1446-1474 |
artikel |
16 |
Rail-based direct air carbon capture
|
Bachman, E. |
|
|
6 |
7 |
p. 1368-1381 |
artikel |
17 |
Self-powered and self-sensing devices based on human motion
|
Lai, Zhihui |
|
|
6 |
7 |
p. 1501-1565 |
artikel |
18 |
Self-powered sensing systems with learning capability
|
Alagumalai, Avinash |
|
|
6 |
7 |
p. 1475-1500 |
artikel |
19 |
Self-powered sensing technologies for human Metaverse interfacing
|
Zhou, Yihao |
|
|
6 |
7 |
p. 1381-1389 |
artikel |
20 |
Surface engineering with oxidized Ti3C2Tx MXene enables efficient and stable p-i-n-structured CsPbI3 perovskite solar cells
|
Heo, Jin Hyuck |
|
|
6 |
7 |
p. 1672-1688 |
artikel |
21 |
Tailoring electric dipole of hole-transporting material p-dopants for perovskite solar cells
|
Xia, Jianxing |
|
|
6 |
7 |
p. 1689-1709 |
artikel |
22 |
Tailoring solvent-mediated ligand exchange for CsPbI3 perovskite quantum dot solar cells with efficiency exceeding 16.5%
|
Jia, Donglin |
|
|
6 |
7 |
p. 1632-1653 |
artikel |
23 |
The energy system transformation needed to achieve the US long-term strategy
|
Horowitz, Russell |
|
|
6 |
7 |
p. 1357-1362 |
artikel |
24 |
The promise of alloy anodes for solid-state batteries
|
Lewis, John A. |
|
|
6 |
7 |
p. 1418-1430 |
artikel |
25 |
Vacuum thermal evaporation saved MA-free perovskite
|
Wu, Pengfei |
|
|
6 |
7 |
p. 1394-1396 |
artikel |