Muestra la distribución de la producción WoS, Scopus y SciELO del autor.
Publicaciones WoS (Ediciones: ISSHP, ISTP, AHCI, SSCI, SCI), Scopus, SciELO Chile.
| Firmas del autor | |
| Nombre | HERRERA, FRANCISCO VICENTE |
| Género | - |
| Área Principal WOS | Chemistry, Physical; Metallurgy & Metallurgical Engineering; Energy & Fuels; |
| Afiliación Principal | Universidad De Santiago De Chile |
| ORCID
|
0000-0001-7783-2970 |
Publicaciones en Chile
Citas Totales
Afiliaciones Chilenas
| WOS | #Pub |
|---|---|
| Chemistry, Physical | 2 |
| Metallurgy & Metallurgical Engineering | 1 |
| Energy & Fuels | 1 |
| Materials Science, Multidisciplinary | 1 |
| Electrochemistry | 1 |
| Scopus | #Pub |
|---|---|
| Energy Engineering And Power Technology | 1 |
| Materials Chemistry | 1 |
| Mechanics Of Materials | 1 |
| Renewable Energy, Sustainability And The Environment | 1 |
| Fuel Technology | 1 |
| Mechanical Engineering | 1 |
| Condensed Matter Physics | 1 |
| Metals And Alloys | 1 |
| SciELO | #Pub |
|---|
| Autor | Género | # Pub |
|---|---|---|
| VINOTH, VICTOR | Hombre | 1 |
| HERRERA-DIAZ, FRANCISCO | Hombre | 1 |
| MANGALARAJA, RAMALINGA VISWANATHAN | - | 2 |
| MURUGESAN, PRAVEEN KUMAR | Hombre | 1 |
| GNANA SUNDARA RAJ, BALASUBRAMANIAM | - | 1 |
| PUGAZHENTHIRAN, NALANDHIRAN | - | 1 |
| RAJ, BALASUBRAMANIAM GNANA SUNDARA | - | 1 |
| ARUNACHALAM, ARULRAJ | - | 1 |
| Año | Firma | Institución (Incites asoc.) | H Index | Average Percentile | Impact Citation | Impact Relative World | Impact Journal Normalized Citation | Impact Category Normalized Citation | Percentage Cited | Percentage Top 1 | Percentage Top 10 | Percentage Journal Q1 | Percentage Journal Q2 | Percentage Journal Q3 | Percentage Journal Q4 |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 2024 | Herrera, Francisco Vicente | Universidad de Santiago de Chile | 9.0 | 26.5 | 0.0 | 0.6 | 0.0 | 0.0 | 0.0 | 0.0 | 0.0 | 23.1 | 0.0 | 0.0 | 0.0 |
| Título | Año | Citas | Tipo | Revista | Indexada |
|---|---|---|---|---|---|
| Facile Sonochemical Synthesis Of Nanostructured Fe Wo4 R Go And Cu Co2 O4 Nanocomposite For High Rate Capability And Stable Asymmetric (Cu Co2 O4//Fe Wo4 R Go) Supercapacitors | 2023 | 0 | artículo de investigación | Journal Of Alloys And Compounds | WoS Scopus |
| Rational Designing Of Ternary Cu S Se Electrocatalyst For Water Splitting: Layered Mastery Of 2 D Nanostructures | 2025 | 0 | artículo de investigación | International Journal Of Hydrogen Energy | WoS Scopus |
| Palabra Clave | #Pub |
|---|---|
| nanosheets | 2 |
| evolution | 1 |
| water splitting | 1 |
| trigonal selenium | 1 |
| sulfoselenide | 1 |
| sonochemical | 1 |
| solvothermal | 1 |
| ni | 1 |
| nanowires | 1 |
| nanocrystals | 1 |
| high-performance | 1 |
| high-energy | 1 |
| graphene | 1 |
| fewo4-rgo | 1 |
| facile synthesis | 1 |
| 2d layered structured | 1 |
| energy storage | 1 |
| energy density | 1 |
| electrode materials | 1 |
| electrocatalyst | 1 |
| efficient | 1 |
| density | 1 |
| cusse | 1 |
| cus | 1 |
| cu | 1 |
| covellite | 1 |
| copper | 1 |
| composite | 1 |
| carbon nanotubes | 1 |
| asymmetric supercapacitors | 1 |