nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
Application of La0.3Sr0.7Fe0.7Ti0.3O3-δ/GDC electrolyte in LT-SOFC
|
Zhou, Xiaomi |
|
|
46 |
15 |
p. 9988-9995 |
artikel |
2 |
A triple (e−/O2−/H+) conducting perovskite BaCo0.4Fe0.4Zr0.1Y0.1O3-δ for low temperature solid oxide fuel cell
|
Jhuang, Jhe-Wei |
|
|
46 |
15 |
p. 9767-9774 |
artikel |
3 |
Biochar triggers methanogenesis recovery of a severely acidified anaerobic digestion system via hydrogen-based syntrophic pathway inhibition
|
Wang, Gaojun |
|
|
46 |
15 |
p. 9666-9677 |
artikel |
4 |
CeO2 coated NaFeO2 proton-conducting electrolyte for solid oxide fuel cell
|
Xing, Yueming |
|
|
46 |
15 |
p. 9855-9860 |
artikel |
5 |
Coking resistant Ni–La0.8Sr0.2FeO3 composite anode improves the stability of syngas-fueled SOFC
|
Yao, Xueli |
|
|
46 |
15 |
p. 9809-9817 |
artikel |
6 |
Compositing protonic conductor BaZr0.5Y0.5O3 (BZY) with triple conductor BaCo0.4Fe0.4Zr0.1Y0.1O3-δ (BCFZY) as electrolyte for advanced solid oxide fuel cell
|
He, Zili |
|
|
46 |
15 |
p. 9799-9808 |
artikel |
7 |
Construction of Mo2C/W2C heterogeneous electrocatalyst for efficient hydrogen evolution reaction
|
Ling, Ying |
|
|
46 |
15 |
p. 9699-9706 |
artikel |
8 |
Demonstrating the dual functionalities of CeO2–CuO composites in solid oxide fuel cells
|
Akbar, Muhammad |
|
|
46 |
15 |
p. 9938-9947 |
artikel |
9 |
Developing cuprospinel CuFe2O4–ZnO semiconductor heterostructure as a proton conducting electrolyte for advanced fuel cells
|
Paydar, Sara |
|
|
46 |
15 |
p. 9927-9937 |
artikel |
10 |
Effect of Li2CO3 and LiOH on the ionic conductivity of BaCe0.9Y0.1O3 electrolyte in SOFCs with a lithium compound electrode
|
Zhang, Xuebai |
|
|
46 |
15 |
p. 9948-9956 |
artikel |
11 |
Effects of P-N and N-N heterostructures and band alignment on the performance of low-temperature solid oxide fuel cells
|
Li, Junjiao |
|
|
46 |
15 |
p. 9790-9798 |
artikel |
12 |
Electrical properties of Ni-doped Sm2O3 electrolyte
|
Zhang, Jing |
|
|
46 |
15 |
p. 9758-9766 |
artikel |
13 |
Electrochemical impact of the carbonate in ceria-carbonate composite for low temperature solid oxide fuel cell
|
Jing, Yifu |
|
|
46 |
15 |
p. 9898-9904 |
artikel |
14 |
Engineering the performance of negative electrode for supercapacitor by polyaniline coated Fe3O4 nanoparticles enables high stability up to 25,000 cycles
|
Javed, Muhammad Sufyan |
|
|
46 |
15 |
p. 9976-9987 |
artikel |
15 |
Evaluation of rare earth (Yb, La) doped (Sm3Fe5O12) garnet ferrite membrane for LT-SOFC
|
Yousaf, Muhammad |
|
|
46 |
15 |
p. 9996-10006 |
artikel |
16 |
Floating microparticles of ZnIn2S4 @hollow glass microsphere for enhanced photocatalytic activity
|
Wang, Leilei |
|
|
46 |
15 |
p. 9678-9689 |
artikel |
17 |
Fuel cell humidity modeling and control using cathode internal water content
|
Fu, Hao |
|
|
46 |
15 |
p. 9905-9917 |
artikel |
18 |
Graphene quantum dot reinforced hyperbranched polyamide proton exchange membrane for direct methanol fuel cell
|
Xu, Guoxiao |
|
|
46 |
15 |
p. 9782-9789 |
artikel |
19 |
Green synthesis of faujasite-La0.6Sr0.4Co0.2Fe0.8O3-δ mineral nanocomposite membrane for low temperature advanced fuel cells
|
Li, Lingyao |
|
|
46 |
15 |
p. 9826-9834 |
artikel |
20 |
High-performance La0.5(Ba0.75Ca0.25)0.5Co0.8Fe0.2O3-δ cathode for proton-conducting solid oxide fuel cells
|
Xie, Dong |
|
|
46 |
15 |
p. 10007-10014 |
artikel |
21 |
Insight into time-correlated structure and interfacial evolvement of nanocomposite and semiconductor heterostructure for advanced fuel cells
|
Liu, Jingjing |
|
|
46 |
15 |
p. 9889-9897 |
artikel |
22 |
Multifunctional layer-perovskite oxide La2-xCexCuO4 for solid oxide fuel cell applications
|
Liu, Qing |
|
|
46 |
15 |
p. 9818-9825 |
artikel |
23 |
Needle-like CoP/rGO growth on nickel foam as an efficient electrocatalyst for hydrogen evolution reaction
|
Yang, Zhaoxia |
|
|
46 |
15 |
p. 9690-9698 |
artikel |
24 |
New progress in hydrogen and fuel cell (preface from NANOSMAT-Asia 2019)
|
Zhu, Bin |
|
|
46 |
15 |
p. 9645 |
artikel |
25 |
Novel porous carbon felt cathode modified by cyclic voltammetric electrodeposited polypyrrole and anthraquinone 2-sulfonate for an efficient electro-Fenton process
|
Gao, Ying |
|
|
46 |
15 |
p. 9707-9717 |
artikel |
26 |
Partially reduced Ni0.8Co0.15Al0.05LiO2-δ for low-temperature SOFC cathode
|
Meng, Yuanjing |
|
|
46 |
15 |
p. 9874-9881 |
artikel |
27 |
Periodical oscillation of particle-laden laminar flow within a tubular photocatalytic hydrogen production reactor predicted by discrete element method
|
Geng, Jiafeng |
|
|
46 |
15 |
p. 9653-9665 |
artikel |
28 |
Porous/dense bilayer BaZr0.8Y0.2O3-δ electrolyte matrix fabricated by tape casting combined with solid-state reactive sintering for protonic ceramic fuel cells
|
Ma, Yu |
|
|
46 |
15 |
p. 9918-9926 |
artikel |
29 |
Preparation of dense ScSZ thin films by plasma spraying with densified ScSZ powders
|
Yuan, Kang |
|
|
46 |
15 |
p. 9749-9757 |
artikel |
30 |
Quantum mechanical interpretation and analysis of perovskite material based single layer fuel cells (SLFCs)
|
Akhtar, Sophia |
|
|
46 |
15 |
p. 9957-9967 |
artikel |
31 |
Remarkable activity of Pd catalyst supported on alumina synthesized via a hydrothermal route for hydrogen release of perhydro-N-propylcarbazole
|
Chen, Zhiwen |
|
|
46 |
15 |
p. 9718-9729 |
artikel |
32 |
Semiconductor-ionic properties and device performance of heterogeneous La-doped CeO2-ZnO nanocomposites
|
Chen, Xin |
|
|
46 |
15 |
p. 9968-9975 |
artikel |
33 |
Single layer low-temperature SOFC based on Ce0.8Sm0.2O2-δ- La0.25Sr0.75Ti1O3-δ-Ni0.8Co0.15Al0.05LiO2-δ composite material
|
Gao, Jie |
|
|
46 |
15 |
p. 9775-9781 |
artikel |
34 |
Stability considerations of semiconductor ionic fuel cells from a LNCA (LiNi0.8Co0.15Al0.05O2-δ) and Sm-doped ceria (SDC; Ce0.8Sm0.2O2-δ) composite electrolyte
|
Yang, Fan |
|
|
46 |
15 |
p. 9882-9888 |
artikel |
35 |
Study on the long-term discharge and redox stability of symmetric flat-tube solid oxide fuel cells
|
Yang, Jun |
|
|
46 |
15 |
p. 9741-9748 |
artikel |
36 |
Study on the strontium segregation behavior of lanthanum strontium cobalt ferrite electrode under compression
|
Yang, Jun |
|
|
46 |
15 |
p. 9730-9740 |
artikel |
37 |
The development of semiconductor-ionic conductor composite electrolytes for fuel cells with symmetrical electrodes
|
Lu, Yuzheng |
|
|
46 |
15 |
p. 9835-9846 |
artikel |
38 |
Tuning an ionic-electronic mixed conductor NdBa0.5Sr0.5Co1.5Fe0.5O5+δ for electrolyte functions of advanced fuel cells
|
Akbar, Nabeela |
|
|
46 |
15 |
p. 9847-9854 |
artikel |
39 |
Tuning semiconductor LaFe0.65Ti0.35O3-δ to fast ionic transport for advanced ceramics fuel cells
|
Rauf, Sajid |
|
|
46 |
15 |
p. 9861-9873 |
artikel |
40 |
Understanding CO2 electrochemical reduction kinetics of mixed-conducting cathodes by the electrical conductivity relaxation method
|
Li, Yihang |
|
|
46 |
15 |
p. 9646-9652 |
artikel |