Matevž Frajnkovič

About Matevž Frajnkovič

Matevž Frajnkovič, With an exceptional h-index of 4 and a recent h-index of 4 (since 2020), a distinguished researcher at University of California, Los Angeles, specializes in the field of heat transfer, statistical thermodynamics, non-equillibrium thermodynamics, electrical energy storage, calorimerty.

His recent articles reflect a diverse array of research interests and contributions to the field:

Microcalorimetry electrothermal impedance spectroscopy (ETIS) informs entropy evolution at individual electrodes of PNb9O25 or TiNb2O7 battery cells

Calorimetry can detect the early onset of hydrolysis in hybrid supercapacitors with aqueous electrolytes

Effect of particle size on thermodynamics and lithium ion transport in electrodes made of Ti2Nb2O9 microparticles or nanoparticles

Potentiometric entropy and operando calorimetric measurements reveal fast charging mechanisms in PNb9O25

Operando calorimetry informs the origin of rapid rate performance in microwave-prepared TiNb2O7 electrodes

Heat generation in electric double layer capacitors with neat and diluted ionic liquid electrolytes under large potential window between 5 and 80° C

Matevž Frajnkovič Information

University

Position

___

Citations(all)

76

Citations(since 2020)

76

Cited By

0

hIndex(all)

4

hIndex(since 2020)

4

i10Index(all)

4

i10Index(since 2020)

4

Email

University Profile Page

Google Scholar

Matevž Frajnkovič Skills & Research Interests

heat transfer

statistical thermodynamics

non-equillibrium thermodynamics

electrical energy storage

calorimerty

Top articles of Matevž Frajnkovič

Microcalorimetry electrothermal impedance spectroscopy (ETIS) informs entropy evolution at individual electrodes of PNb9O25 or TiNb2O7 battery cells

Electrochimica Acta

2023/11/10

Calorimetry can detect the early onset of hydrolysis in hybrid supercapacitors with aqueous electrolytes

Journal of Power Sources

2022/11/15

Effect of particle size on thermodynamics and lithium ion transport in electrodes made of Ti2Nb2O9 microparticles or nanoparticles

Energy Storage Materials

2022/11/1

Potentiometric entropy and operando calorimetric measurements reveal fast charging mechanisms in PNb9O25

Journal of Power Sources

2022/2/1

Operando calorimetry informs the origin of rapid rate performance in microwave-prepared TiNb2O7 electrodes

Journal of Power Sources

2020/4/1

Heat generation in electric double layer capacitors with neat and diluted ionic liquid electrolytes under large potential window between 5 and 80° C

Journal of Power Sources

2021/3/15

See List of Professors in Matevž Frajnkovič University(University of California, Los Angeles)