Follow
Yash Thakur
Yash Thakur
Staff SoC Device Engineer, Intel
Verified email at intel.com
Title
Cited by
Cited by
Year
Enhancement of the dielectric response in polymer nanocomposites with low dielectric constant fillers
Y Thakur, T Zhang, C Iacob, T Yang, J Bernholc, LQ Chen, J Runt, ...
Nanoscale 9 (31), 10992-10997, 2017
2352017
A highly scalable dielectric metamaterial with superior capacitor performance over a broad temperature
T Zhang, X Chen, Y Thakur, B Lu, Q Zhang, J Runt, QM Zhang
Science Advances 6 (4), 7, 2020
2202020
Generating High Dielectric Constant Blends from Lower Dielectric Constant Dipolar Polymers using Nanostructure Engineering
Y Thakur, B Zhang, R Dong, W Lu, C Iacob, J Runt, J Bernholc, QM Zhang
Nano Energy 32, 73-79, 2017
1022017
Aromatic poly (arylene ether urea) with high dipole moment for high thermal stability and high energy density capacitors
Z Cheng, M Lin, S Wu, Y Thakur, Y Zhou, DY Jeong, Q Shen, QM Zhang
Applied Physics Letters 106 (20), 2015
552015
Optimizing nanostructure to achieve high dielectric response with low loss in strongly dipolar polymers
Y Thakur, R Dong, M Lin, S Wu, Z Cheng, Y Hou, J Bernholc, QM Zhang
Nano Energy 16, 227-234, 2015
532015
Reducing conduction losses in high energy density polymer using nanocomposites
Y Thakur, MH Lean, QM Zhang
Applied Physics Letters 110 (12), 2017
472017
Tailoring the dipole properties in dielectric polymers to realize high energy density with high breakdown strength and low dielectric loss
Y Thakur, M Lin, S Wu, Z Cheng, DY Jeong, QM Zhang
Journal of Applied Physics 117 (11), 2015
452015
Aromatic polyurea possessing high electrical energy density and low loss
Y Thakur, M Lin, S Wu, QM Zhang
Journal of Electronic Materials 45, 4721-4725, 2016
242016
Stable dielectric response of low-loss aromatic polythiourea thin films on Pt/SiO2 substrate
A Eršte, L Fulanović, L Čoga, M Lin, Y Thakur, QM Zhang, V Bobnar
Journal of Advanced Dielectrics 6 (01), 1650003, 2016
52016
Introducing free volume in strongly dipolar polymers to achieve high dielectric constant
Y Thakur, M Lin, S Wu, QM Zhang
2015 IEEE Conference on Electrical Insulation and Dielectric Phenomena …, 2015
42015
Lift-off patterning of nano-crystalline quantum dot films
A Sabeeh, Y Thakur, J Ruzyllo
ECS Transactions 69 (12), 53, 2015
42015
Mitigation of conduction loss in a semi-crystalline polymer with high dielectric constant and high charge-discharge efficiency
Y Thakur, T Zhang, M Lin, QM Zhang, MH Lean
2016 IEEE International Conference on Dielectrics (ICD) 1, 59-63, 2016
32016
Methods of patterned mist deposition of nano-crystalline quantum dot films
A Sabeeh, Y Thakur, JH Chao, A Kshirsagar, J Ruzyllo
ECS Transactions 64 (43), 1, 2015
22015
Fabrication and Characterization of Semi-Crystalline and Amorphous Dielectric Polymer Films for Energy Storage
H Ayornu, S Anwar, Y Thakur
Materials Sciences and Applications 13 (11), 559-568, 2022
12022
Doped dielectric polymers with low dielectric constant nanofillers
T Zhang, Y Thakur, QM Zhang
2017 IEEE Conference on Electrical Insulation and Dielectric Phenomenon …, 2017
12017
Methods of patterned mist deposition of nano-crystalline quantum dot films
A Sabeeh, Y Thakur, JH Chao, A Kshirsagar, J Ruzyllo
Electrochemical Society Meeting Abstracts 226, 2019-2019, 2014
12014
Thin film capacitors
Q Zhang, Y Thakur, R James, T Zhang
US Patent 10,832,868, 2020
2020
Dielectric polymers and dielectric metamaterials for high-energy capacitors
X Chen, T Zhang, Y Thakur, Q Zhang, QM Zhang
Advanced Dielectric Materials for Electrostatic Capacitors, 71-107, 2020
2020
Dielectric enhancement in strongly dipolar polymers: mixing and free volume effects
B Zhang, Y Thakur, R Dong, W Lu, C Iacob, J Runt, Q Zhang, J Bernholc
APS March Meeting Abstracts 2018, V56. 010, 2018
2018
Achieving dielectric enhancement in dipolar polymer blends: free volume increase while maintaining low loss
B Zhang, Y Thakur, R Dong, W Lu, C Iacob, J Runt, Q Zhang, J Bernholc
APS March Meeting Abstracts 2017, P11. 002, 2017
2017
The system can't perform the operation now. Try again later.
Articles 1–20