Class information for: |
Basic class information |
| Class id | #P | Avg. number of references |
Database coverage of references |
|---|---|---|---|
| 24 | 35732 | 32.1 | 85% |
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 | CARBON NANOTUBES | authKW | 2065821 | 20% | 33% | 7279 |
| 2 | SINGLE WALLED CARBON NANOTUBES | authKW | 378245 | 3% | 49% | 910 |
| 3 | FIELD EMISSION | authKW | 296815 | 3% | 39% | 906 |
| 4 | CARBON | journal | 207684 | 5% | 15% | 1700 |
| 5 | NANOSCIENCE & NANOTECHNOLOGY | WoSSC | 191038 | 25% | 3% | 8964 |
| 6 | NONLOCAL ELASTICITY | authKW | 139698 | 1% | 70% | 233 |
| 7 | NANOTUBES | authKW | 131304 | 3% | 17% | 908 |
| 8 | MATERIALS SCIENCE, MULTIDISCIPLINARY | WoSSC | 116707 | 41% | 1% | 14575 |
| 9 | CHEMICAL VAPOR DEPOSITION | authKW | 93764 | 2% | 15% | 735 |
| 10 | PHYSICS, APPLIED | WoSSC | 92305 | 34% | 1% | 12114 |
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 | Nanoscience & Nanotechnology | 191038 | 25% | 3% | 8964 |
| 2 | Materials Science, Multidisciplinary | 116707 | 41% | 1% | 14575 |
| 3 | Physics, Applied | 92305 | 34% | 1% | 12114 |
| 4 | Physics, Condensed Matter | 63555 | 23% | 1% | 8378 |
| 5 | Chemistry, Physical | 48759 | 26% | 1% | 9441 |
| 6 | Chemistry, Multidisciplinary | 19169 | 17% | 1% | 6217 |
| 7 | Physics, Atomic, Molecular & Chemical | 4103 | 6% | 0% | 1977 |
| 8 | Physics, Multidisciplinary | 2946 | 6% | 0% | 2117 |
| 9 | Materials Science, Coatings & Films | 2671 | 2% | 1% | 874 |
| 10 | Materials Science, Composites | 1673 | 1% | 1% | 429 |
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 | NANOTUBE | 67654 | 0% | 49% | 163 |
| 2 | NANOMECH GRP | 38180 | 0% | 53% | 85 |
| 3 | NANOTUBES NANOSTRUCT COMPOSITES | 37801 | 0% | 45% | 98 |
| 4 | PHYS CHEM NANODEVICES | 33263 | 0% | 23% | 170 |
| 5 | PHYS | 32004 | 18% | 1% | 6460 |
| 6 | RICHARD E SMALLEY NANOSCALE SCI TECHNOL | 30416 | 0% | 38% | 95 |
| 7 | NANOSCALE SCI TECHNOL | 26143 | 1% | 15% | 214 |
| 8 | TSINGHUA FOXCONN NANOTECHNOL | 25478 | 0% | 32% | 93 |
| 9 | MAT SCI ENGN | 23322 | 8% | 1% | 2952 |
| 10 | ADV CARBON MAT | 22912 | 0% | 33% | 81 |
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 | CARBON | 207684 | 5% | 15% | 1700 |
| 2 | NANOTECHNOLOGY | 54041 | 2% | 8% | 866 |
| 3 | NANO LETTERS | 45950 | 2% | 7% | 821 |
| 4 | FULLERENES NANOTUBES AND CARBON NANOSTRUCTURES | 38729 | 1% | 20% | 235 |
| 5 | JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY | 33686 | 2% | 5% | 799 |
| 6 | PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES | 30186 | 2% | 7% | 547 |
| 7 | ACS NANO | 29610 | 2% | 6% | 576 |
| 8 | DIAMOND AND RELATED MATERIALS | 28149 | 1% | 7% | 495 |
| 9 | JOURNAL OF COMPUTATIONAL AND THEORETICAL NANOSCIENCE | 21600 | 1% | 9% | 287 |
| 10 | JOURNAL OF PHYSICAL CHEMISTRY C | 21584 | 3% | 3% | 926 |
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 | CARBON NANOTUBES | 2065821 | 20% | 33% | 7279 | Search CARBON+NANOTUBES | Search CARBON+NANOTUBES |
| 2 | SINGLE WALLED CARBON NANOTUBES | 378245 | 3% | 49% | 910 | Search SINGLE+WALLED+CARBON+NANOTUBES | Search SINGLE+WALLED+CARBON+NANOTUBES |
| 3 | FIELD EMISSION | 296815 | 3% | 39% | 906 | Search FIELD+EMISSION | Search FIELD+EMISSION |
| 4 | NONLOCAL ELASTICITY | 139698 | 1% | 70% | 233 | Search NONLOCAL+ELASTICITY | Search NONLOCAL+ELASTICITY |
| 5 | NANOTUBES | 131304 | 3% | 17% | 908 | Search NANOTUBES | Search NANOTUBES |
| 6 | CHEMICAL VAPOR DEPOSITION | 93764 | 2% | 15% | 735 | Search CHEMICAL+VAPOR+DEPOSITION | Search CHEMICAL+VAPOR+DEPOSITION |
| 7 | SINGLE WALL CARBON NANOTUBES | 91827 | 1% | 46% | 234 | Search SINGLE+WALL+CARBON+NANOTUBES | Search SINGLE+WALL+CARBON+NANOTUBES |
| 8 | NONLOCAL ELASTICITY THEORY | 88292 | 0% | 86% | 120 | Search NONLOCAL+ELASTICITY+THEORY | Search NONLOCAL+ELASTICITY+THEORY |
| 9 | CARBON NANOTUBE CNT | 74921 | 1% | 48% | 182 | Search CARBON+NANOTUBE+CNT | Search CARBON+NANOTUBE+CNT |
| 10 | SWCNT | 70300 | 1% | 43% | 194 | Search SWCNT | Search SWCNT |
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 | TASIS, D , TAGMATARCHIS, N , BIANCO, A , PRATO, M , (2006) CHEMISTRY OF CARBON NANOTUBES.CHEMICAL REVIEWS. VOL. 106. ISSUE 3. P. 1105 -1136 | 467 | 58% | 2413 |
| 2 | KHARLAMOVA, MV , (2016) ADVANCES IN TAILORING THE ELECTRONIC PROPERTIES OF SINGLE-WALLED CARBON NANOTUBES.PROGRESS IN MATERIALS SCIENCE. VOL. 77. ISSUE . P. 125 -211 | 379 | 94% | 6 |
| 3 | BURGHARD, M , (2005) ELECTRONIC AND VIBRATIONAL PROPERTIES OF CHEMICALLY MODIFIED SINGLE-WALL CARBON NANOTUBES.SURFACE SCIENCE REPORTS. VOL. 58. ISSUE 1-4. P. 1 -109 | 521 | 86% | 172 |
| 4 | BLASE, X , ROCHE, S , CHARLIER, JC , (2007) ELECTRONIC AND TRANSPORT PROPERTIES OF NANOTUBES.REVIEWS OF MODERN PHYSICS. VOL. 79. ISSUE 2. P. 677 -732 | 272 | 76% | 694 |
| 5 | ZHANG, Q , HUANG, JQ , ZHAO, MQ , QIAN, WZ , WEI, F , (2011) CARBON NANOTUBE MASS PRODUCTION: PRINCIPLES AND PROCESSES.CHEMSUSCHEM. VOL. 4. ISSUE 7. P. 864 -889 | 329 | 83% | 98 |
| 6 | KAROUSIS, N , TAGMATARCHIS, N , TASIS, D , (2010) CURRENT PROGRESS ON THE CHEMICAL MODIFICATION OF CARBON NANOTUBES.CHEMICAL REVIEWS. VOL. 110. ISSUE 9. P. 5366-5397 | 264 | 67% | 518 |
| 7 | PARK, S , VOSGUERICHIAN, M , BAO, ZA , (2013) A REVIEW OF FABRICATION AND APPLICATIONS OF CARBON NANOTUBE FILM-BASED FLEXIBLE ELECTRONICS.NANOSCALE. VOL. 5. ISSUE 5. P. 1727 -1752 | 223 | 71% | 279 |
| 8 | KHARLAMOVA, MV , (2013) ELECTRONIC PROPERTIES OF PRISTINE AND MODIFIED SINGLE-WALLED CARBON NANOTUBES.PHYSICS-USPEKHI. VOL. 56. ISSUE 11. P. 1047 -1073 | 335 | 90% | 12 |
| 9 | MOORE, KE , TUNE, DD , FLAVEL, BS , (2015) DOUBLE-WALLED CARBON NANOTUBE PROCESSING.ADVANCED MATERIALS. VOL. 27. ISSUE 20. P. 3105 -3137 | 281 | 92% | 8 |
| 10 | CAO, Q , ROGERS, JA , (2009) ULTRATHIN FILMS OF SINGLE-WALLED CARBON NANOTUBES FOR ELECTRONICS AND SENSORS: A REVIEW OF FUNDAMENTAL AND APPLIED ASPECTS.ADVANCED MATERIALS. VOL. 21. ISSUE 1. P. 29 -53 | 230 | 70% | 543 |
Classes with closest relation at Level 2 |