Class information for: |
Basic class information |
| Class id | #P | Avg. number of references |
Database coverage of references |
|---|---|---|---|
| 354 | 17454 | 28.1 | 69% |
Hierarchy of classes |
The table includes all classes above and classes immediately below the current class. |
Terms with highest relevance score |
| rank | Term | termType | Chi square | Shr. of publ. in class containing term |
Class's shr. of term's tot. occurrences |
#P with term in class |
|---|---|---|---|---|---|---|
| 1 | THERMOELECTRIC | authKW | 1774629 | 9% | 67% | 1510 |
| 2 | THERMOELECTRIC MATERIALS | authKW | 1021661 | 5% | 71% | 823 |
| 3 | THERMOELECTRIC PROPERTIES | authKW | 1008384 | 5% | 66% | 874 |
| 4 | SKUTTERUDITE | authKW | 771455 | 3% | 97% | 456 |
| 5 | THERMOELECTRIC GENERATOR | authKW | 460831 | 2% | 85% | 309 |
| 6 | FILLED SKUTTERUDITE | authKW | 437034 | 1% | 98% | 255 |
| 7 | BISMUTH TELLURIDE | authKW | 426575 | 2% | 81% | 303 |
| 8 | THERMOELECTRICITY | authKW | 298745 | 2% | 57% | 300 |
| 9 | SEEBECK COEFFICIENT | authKW | 295205 | 2% | 47% | 363 |
| 10 | BI2TE3 | authKW | 287534 | 1% | 86% | 192 |
Web of Science journal categories |
| Rank | Term | Chi square | Shr. of publ. in class containing term |
Class's shr. of term's tot. occurrences |
#P with term in class |
|---|---|---|---|---|---|
| 1 | Materials Science, Multidisciplinary | 42742 | 36% | 0% | 6261 |
| 2 | Physics, Applied | 41955 | 33% | 1% | 5730 |
| 3 | Physics, Condensed Matter | 35495 | 25% | 1% | 4346 |
| 4 | Metallurgy & Metallurgical Engineering | 9207 | 9% | 0% | 1490 |
| 5 | Thermodynamics | 6885 | 6% | 1% | 987 |
| 6 | Chemistry, Physical | 5568 | 15% | 0% | 2569 |
| 7 | Nanoscience & Nanotechnology | 5538 | 7% | 0% | 1209 |
| 8 | Energy & Fuels | 3321 | 5% | 0% | 922 |
| 9 | Physics, Multidisciplinary | 2730 | 7% | 0% | 1297 |
| 10 | Engineering, Electrical & Electronic | 2362 | 9% | 0% | 1643 |
Address terms |
| Rank | Term | Chi square | Shr. of publ. in class containing term |
Class's shr. of term's tot. occurrences |
#P with term in class |
|---|---|---|---|---|---|
| 1 | STATE ADV TECHNOL MAT SYNTH PROC | 45946 | 2% | 9% | 292 |
| 2 | ENGN STRUCT MECH | 37132 | 0% | 48% | 44 |
| 3 | PURE PL PHYS SCI | 35249 | 0% | 27% | 75 |
| 4 | THERMOELECT | 33417 | 0% | 55% | 35 |
| 5 | MAT SCI ENGN | 26126 | 12% | 1% | 2108 |
| 6 | RENEWABLE ENERGY ADV MAT MFG TECHNOL | 25676 | 0% | 70% | 21 |
| 7 | THERMAL ENERGY CONVERS TECHNOL GRP | 24850 | 0% | 89% | 16 |
| 8 | STATE PLAST FORMING SIMULAT DIES TECHNO | 23125 | 0% | 88% | 15 |
| 9 | TCSUH | 22731 | 0% | 27% | 49 |
| 10 | PHYS | 20885 | 20% | 0% | 3575 |
Journals |
| Rank | Term | Chi square | Shr. of publ. in class containing term |
Class's shr. of term's tot. occurrences |
#P with term in class |
|---|---|---|---|---|---|
| 1 | JOURNAL OF ELECTRONIC MATERIALS | 212541 | 6% | 11% | 1089 |
| 2 | JOURNAL OF ALLOYS AND COMPOUNDS | 19457 | 4% | 2% | 688 |
| 3 | PHYSICAL REVIEW B | 18298 | 8% | 1% | 1384 |
| 4 | JOURNAL OF APPLIED PHYSICS | 15120 | 6% | 1% | 1003 |
| 5 | JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN | 11523 | 2% | 2% | 375 |
| 6 | PHYSICA B-CONDENSED MATTER | 8717 | 2% | 1% | 407 |
| 7 | JOURNAL OF SOLID STATE CHEMISTRY | 8030 | 2% | 2% | 265 |
| 8 | APPLIED PHYSICS LETTERS | 5859 | 4% | 1% | 659 |
| 9 | JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME | 5295 | 1% | 2% | 142 |
| 10 | NANOSCALE AND MICROSCALE THERMOPHYSICAL ENGINEERING | 5284 | 0% | 12% | 25 |
Author Key Words |
| Rank | Term | Chi square | Shr. of publ. in class containing term |
Class's shr. of term's tot. occurrences |
#P with term in class |
LCSH search | Wikipedia search |
|---|---|---|---|---|---|---|---|
| 1 | THERMOELECTRIC | 1774629 | 9% | 67% | 1510 | Search THERMOELECTRIC | Search THERMOELECTRIC |
| 2 | THERMOELECTRIC MATERIALS | 1021661 | 5% | 71% | 823 | Search THERMOELECTRIC+MATERIALS | Search THERMOELECTRIC+MATERIALS |
| 3 | THERMOELECTRIC PROPERTIES | 1008384 | 5% | 66% | 874 | Search THERMOELECTRIC+PROPERTIES | Search THERMOELECTRIC+PROPERTIES |
| 4 | SKUTTERUDITE | 771455 | 3% | 97% | 456 | Search SKUTTERUDITE | Search SKUTTERUDITE |
| 5 | THERMOELECTRIC GENERATOR | 460831 | 2% | 85% | 309 | Search THERMOELECTRIC+GENERATOR | Search THERMOELECTRIC+GENERATOR |
| 6 | FILLED SKUTTERUDITE | 437034 | 1% | 98% | 255 | Search FILLED+SKUTTERUDITE | Search FILLED+SKUTTERUDITE |
| 7 | BISMUTH TELLURIDE | 426575 | 2% | 81% | 303 | Search BISMUTH+TELLURIDE | Search BISMUTH+TELLURIDE |
| 8 | THERMOELECTRICITY | 298745 | 2% | 57% | 300 | Search THERMOELECTRICITY | Search THERMOELECTRICITY |
| 9 | SEEBECK COEFFICIENT | 295205 | 2% | 47% | 363 | Search SEEBECK+COEFFICIENT | Search SEEBECK+COEFFICIENT |
| 10 | BI2TE3 | 287534 | 1% | 86% | 192 | Search BI2TE3 | Search BI2TE3 |
Core articles |
The table includes core articles in the class. The following variables is taken into account for the relevance score of an article in a cluster c: (1) Number of references referring to publications in the class. (2) Share of total number of active references referring to publications in the class. (3) Age of the article. New articles get higher score than old articles. (4) Citation rate, normalized to year. |
| Rank | Reference | # ref. in cl. |
Shr. of ref. in cl. |
Citations |
|---|---|---|---|---|
| 1 | SHI, X , CHEN, L , UHER, C , (2016) RECENT ADVANCES IN HIGH-PERFORMANCE BULK THERMOELECTRIC MATERIALS.INTERNATIONAL MATERIALS REVIEWS. VOL. 61. ISSUE 6. P. 379 -415 | 261 | 74% | 6 |
| 2 | REN, ZF , LIU, WS , JIE, Q , KIM, HS , (2015) CURRENT PROGRESS AND FUTURE CHALLENGES IN THERMOELECTRIC POWER GENERATION: FROM MATERIALS TO DEVICES.ACTA MATERIALIA. VOL. 87. ISSUE . P. 357 -376 | 147 | 93% | 51 |
| 3 | LAN, YC , MINNICH, AJ , CHEN, G , REN, ZF , (2010) ENHANCEMENT OF THERMOELECTRIC FIGURE-OF-MERIT BY A BULK NANOSTRUCTURING APPROACH.ADVANCED FUNCTIONAL MATERIALS. VOL. 20. ISSUE 3. P. 357 -376 | 165 | 87% | 310 |
| 4 | DOLYNIUK, JA , OWENS-BAIRD, B , WANG, J , ZAIKINA, JV , KOVNIR, K , (2016) CLATHRATE THERMOELECTRICS.MATERIALS SCIENCE & ENGINEERING R-REPORTS. VOL. 108. ISSUE . P. 1 -46 | 231 | 87% | 1 |
| 5 | SOOTSMAN, JR , CHUNG, DY , KANATZIDIS, MG , (2009) NEW AND OLD CONCEPTS IN THERMOELECTRIC MATERIALS.ANGEWANDTE CHEMIE-INTERNATIONAL EDITION. VOL. 48. ISSUE 46. P. 8616 -8639 | 142 | 79% | 667 |
| 6 | TAN, GJ , ZHAO, LD , KANATZIDIS, MG , (2016) RATIONALLY DESIGNING HIGH-PERFORMANCE BULK THERMOELECTRIC MATERIALS.CHEMICAL REVIEWS. VOL. 116. ISSUE 19. P. 12123 -12149 | 177 | 82% | 6 |
| 7 | TAKABATAKE, T , SUEKUNI, K , NAKAYAMA, T , (2014) PHONON-GLASS ELECTRON-CRYSTAL THERMOELECTRIC CLATHRATES: EXPERIMENTS AND THEORY.REVIEWS OF MODERN PHYSICS. VOL. 86. ISSUE 2. P. 669 -716 | 171 | 80% | 70 |
| 8 | RULL-BRAVO, M , MOURE, A , FERNANDEZ, JF , MARTIN-GONZALEZ, M , (2015) SKUTTERUDITES AS THERMOELECTRIC MATERIALS: REVISITED.RSC ADVANCES. VOL. 5. ISSUE 52. P. 41653 -41667 | 146 | 95% | 19 |
| 9 | TIAN, ZT , LEE, S , CHEN, G , (2013) HEAT TRANSFER IN THERMOELECTRIC MATERIALS AND DEVICES.JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME. VOL. 135. ISSUE 6. P. - | 186 | 90% | 23 |
| 10 | ZHAO, LD , DRAVID, VP , KANATZIDIS, MG , (2014) THE PANOSCOPIC APPROACH TO HIGH PERFORMANCE THERMOELECTRICS.ENERGY & ENVIRONMENTAL SCIENCE. VOL. 7. ISSUE 1. P. 251-268 | 98 | 90% | 154 |
Classes with closest relation at Level 2 |