화학공학소재연구정보센터
검색결과 : 37건
No. Article
1 Optimal Control of Lossy Energy Storage Systems With Nonlinear Efficiency Based on Dynamic Programming and Pontryagin's Minimum Principle
Chowdhury NR, Ofir R, Zargari N, Baimel D, Belikov J, Levron Y
IEEE Transactions on Energy Conversion, 36(1), 524, 2021
2 Advanced aqueous energy storage devices based on flower-like nanosheets-assembled Ni0.85Se microspheres and porous Fe2O3 nanospheres
Yun XR, Li JY, Luo ZH, Tang J, Zhu YR
Electrochimica Acta, 302, 449, 2019
3 Experimental study of charging a compact PCM energy storage device for transport application with dynamic exergy analysis
Nie BJ, She XH, Yu QH, Zou BY, Zhao YQ, Li YL, Ding YL
Energy Conversion and Management, 196, 536, 2019
4 A novel battery-supercapacitor system with extraordinarily high performance
Lee SH, Jin BS, Kim HS, Ahn HJ, Lee BG
International Journal of Hydrogen Energy, 44(5), 3013, 2019
5 A dual mode distributed economic control for a fuel cell- photovoltaic-battery hybrid power generation system based on marginal cost
Yang HQ, Li Q, Wang TH, Qiu YB, Chen WR
International Journal of Hydrogen Energy, 44(36), 25229, 2019
6 Nickel molybdate nanorods supported on three-dimensional, porous nickel film coated on copper wire as an advanced binder-free electrode for flexible wire-type asymmetric micro-supercapacitors with enhanced electrochemical performances
Naderi L, Shahrokhian S
Journal of Colloid and Interface Science, 542, 325, 2019
7 아연-이온 전기화학 커패시터의 에너지 저장 성능향상을 위한 다공성 전극 제조
안건형
Korean Journal of Materials Research, 29(8), 505, 2019
8 하이브리드 슈퍼커패시터의 음극 및 양극 설계에 따른 전기화학적 거동
신승일, 이병관, 하민우, 안건형
Korean Journal of Materials Research, 29(12), 774, 2019
9 High-performance flexible all-solid-state asymmetric supercapacitors from nanostructured electrodes prepared by oxidation-assisted dealloying protocol
Wang R, Sui YW, Huang SF, Pu YG, Cao P
Chemical Engineering Journal, 331, 527, 2018
10 Interface-rich core-shell ammonium nickel cobalt phosphate for high-performance aqueous hybrid energy storage device without a depressed power density
Wang M, Zhao YP, Zhang XJ, Qi RJ, Shi SS, Li ZP, Wang QJ, Zhao YF
Electrochimica Acta, 272, 184, 2018