Contributors |
|
ix | |
Preamble |
|
xv | |
Introduction: The future of our energy supply relies on ceramic materials |
|
xvii | |
|
Part One Ceramics for power generation |
|
|
|
1 High-temperature materials for power generation in gas turbines |
|
|
3 | (60) |
|
|
|
|
|
|
|
1 Background and technical relevance |
|
|
3 | (4) |
|
2 High-temperature structural materials |
|
|
7 | (17) |
|
|
24 | (27) |
|
|
51 | (1) |
|
|
51 | (11) |
|
|
62 | (1) |
|
2 Ceramics in the nuclear fuel cycle |
|
|
63 | (26) |
|
|
|
|
1 Uranium and thorium ore |
|
|
65 | (1) |
|
2 Nuclear fuel manufacture and operation |
|
|
66 | (11) |
|
3 Burnable absorbers and neutron control materials |
|
|
77 | (2) |
|
|
79 | (1) |
|
|
80 | (1) |
|
6 Waste and geological disposal |
|
|
80 | (3) |
|
|
83 | (4) |
|
|
87 | (2) |
|
3 Ceramics for concentrated solar power (CSP): From thermophysical properties to solar absorbers |
|
|
89 | (42) |
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
89 | (4) |
|
2 High-temperature air-stable metal/ceramic solar selective absorber multilayer coatings based on silicon carbide |
|
|
93 | (9) |
|
3 Performances and capabilities of materials under high solar flux |
|
|
102 | (10) |
|
4 Thermomechanical design and proof of concept of a high-temperature pressurized solar ceramic receiver |
|
|
112 | (7) |
|
|
119 | (2) |
|
|
121 | (1) |
|
|
122 | (5) |
|
|
127 | (4) |
|
Part Two Ceramics for energy harvesting |
|
|
|
4 Oxide thermoelectrics: From materials to module |
|
|
131 | (26) |
|
|
|
1 Introduction and applications of thermoelectricity |
|
|
131 | (6) |
|
2 TE oxide materials (n- and p-type) |
|
|
137 | (2) |
|
3 TE generator performance and models |
|
|
139 | (6) |
|
4 Segmented TE generators |
|
|
145 | (3) |
|
|
148 | (4) |
|
|
152 | (1) |
|
|
152 | (5) |
|
|
157 | (50) |
|
|
|
|
|
|
|
|
|
157 | (17) |
|
2 Textured piezoelectric ceramics |
|
|
174 | (10) |
|
|
184 | (3) |
|
4 Functions and applications of piezoelectric ceramics |
|
|
187 | (15) |
|
|
202 | (1) |
|
|
203 | (3) |
|
|
206 | (1) |
|
6 Functional metal oxide ceramics as electron transport medium in photovoltaics and photo-electrocatalysis |
|
|
207 | (70) |
|
|
|
|
|
|
|
207 | (3) |
|
2 Nanostructured metal oxide ceramics as electron transport medium for PEC water splitting reactions |
|
|
210 | (17) |
|
3 Nanostructured metal oxide ceramics as electron transport medium in inorganic-organic hybrid perovskite solar cells |
|
|
227 | (13) |
|
4 Transient characterization of charge carrier dynamics in ceramics |
|
|
240 | (16) |
|
5 Conclusions and perspectives |
|
|
256 | (2) |
|
|
258 | (1) |
|
|
258 | (15) |
|
|
273 | (4) |
|
Part Three Ceramics for electrochemical applications |
|
|
|
7 Fundamentals of electrical conduction in ceramics |
|
|
277 | (44) |
|
|
|
1 Introduction to electrical conductivity |
|
|
277 | (3) |
|
2 Concentration of charge carriers |
|
|
280 | (17) |
|
3 Mobility of charge carriers |
|
|
297 | (21) |
|
|
318 | (1) |
|
|
319 | (2) |
|
8 Gas separation ceramic membranes |
|
|
321 | (66) |
|
|
|
Mieke W.J. Luiten-Olieman |
|
|
|
|
321 | (3) |
|
2 Types of ceramic-based membranes for gas separation |
|
|
324 | (16) |
|
3 Ionic transport ceramic membranes |
|
|
340 | (17) |
|
4 Catalytic membrane reactors |
|
|
357 | (14) |
|
|
371 | (1) |
|
|
372 | (1) |
|
|
372 | (13) |
|
|
385 | (2) |
|
9 Solid oxide fuel and electrolysis cells |
|
|
387 | (162) |
|
|
|
|
|
|
|
|
Antonio Gianfranco Sabato |
|
|
|
|
|
|
387 | (12) |
|
2 Oxygen-ion-conducting electrolytes |
|
|
399 | (9) |
|
3 Fuel electrode materials for oxygen-ion conductors |
|
|
408 | (17) |
|
4 Air electrode materials for oxygen-ion conductors |
|
|
425 | (18) |
|
5 Proton conductors and adjacent electrodes |
|
|
443 | (21) |
|
|
464 | (18) |
|
7 Ceramic coatings for interconnects |
|
|
482 | (12) |
|
|
494 | (16) |
|
|
510 | (9) |
|
|
519 | (1) |
|
|
519 | (28) |
|
|
547 | (2) |
|
10 Ceramics for electrochemical storage |
|
|
549 | (162) |
|
|
|
|
|
|
|
|
|
|
|
|
|
|
1 Introduction: Overview of battery technologies |
|
|
549 | (14) |
|
2 Ceramic anodes for Li and Na-ion batteries |
|
|
563 | (30) |
|
3 Ceramic cathodes for Li and Na-ion batteries |
|
|
593 | (47) |
|
4 Ceramics as separators and solid electrolytes |
|
|
640 | (23) |
|
|
663 | (2) |
|
|
665 | (42) |
|
|
707 | (4) |
Index |
|
711 | |