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Featured researches published by Xinfang Jin.


Energy and Environmental Science | 2016

A dynamic solid oxide fuel cell empowered by the built-in iron-bed solid fuel

Cuijuan Zhang; Chengxiang Ji; Wensheng Wang; Doug Schmidt; Xinfang Jin; John P. Lemmon; Kevin Huang

Large scale integration of intermittent solar and wind power can result in an imbalance in generation and load creating a stressed grid with increased frequency excursions and large power ramps. To mitigate these instabilities the use of energy storage devices such as batteries or other mechanical devices is under investigation. Solid oxide fuel cells (SOFCs) are a class of efficient and clean power generator that can provide a timely power injection into the grid. However, they have limited ramping capability and overload tolerance due to fuel delivery constraints that can cause fuel starvation, resulting in Ni-oxidation and irreversible degradation in performance. Herein, we demonstrate a new concept of SOFC that incorporates a regenerative Fe-bed inside the anode chamber as a means of boosting SOFCs dynamic response. The testing results show that such Fe-bed SOFC can operate at 195% overloaded power with a doubled power output over the baseload for at least 5 min, whereas the control Fe-bed free SOFC cannot operate even at 27% overload for 1 min. More interestingly, the Fe-SOFC can respond to load demand instantaneously, reaching a ramp rate of ±11 W cm−2 min−1. The demonstrated new functionality is expected to empower SOFCs to play a transformational role in providing fast ramping power to the utility grid and overload-tolerant baseload power to the critical data centres. The challenges of this new technology are also discussed.


Journal of The Electrochemical Society | 2016

A Broad Stability Investigation of Nb-Doped SrCoO2.5+δ as a Reversible Oxygen Electrode for Intermediate-Temperature Solid Oxide Fuel Cells

Jie Wang; Long Jiang; Xiaolei Xiong; Cuijuan Zhang; Xinfang Jin; Libin Lei; Kevin Huang


Journal of Power Sources | 2015

A high-fidelity multiphysics model for the new solid oxide iron-air redox battery part I: Bridging mass transport and charge transfer with redox cycle kinetics

Xinfang Jin; Xuan Zhao; Kevin Huang


Electrochimica Acta | 2015

Computational Analysis of Performance Limiting Factors for the New Solid Oxide Iron-air Redox Battery Operated at 550 °C

Xinfang Jin; Xuan Zhao; Cuijuan Zhang; Ralph E. White; Kevin Huang


Journal of The Electrochemical Society | 2016

Thermal and Electrical Stability of Sr0.9Y0.1CoO2.5+δ as a Promising Cathode for Intermediate-Temperature Solid Oxide Fuel Cells

Long Jiang; Jie Wang; Xiaolei Xiong; Xinfang Jin; Qiming Pei; Kevin Huang


Journal of Solid State Chemistry | 2017

A new defect chemistry model for Nb-doped SrCoO2.5+δ: The role of oxygen interstitials and delocalized-to-localized electron holes

Jie Wang; Xinfang Jin; Kevin Huang


Electrochimica Acta | 2017

The Role of Pre-Lithiation in Activated Carbon/Li4Ti5O12 Asymmetric Capacitors

Nansheng Xu; Xianzhong Sun; Feifei Zhao; Xinfang Jin; Xiong Zhang; Kai Wang; Kevin Huang; Yanwei Ma


ECS Conference on Electrochemical Energy Conversion & Storage with SOFC-XIV (July 26-31, 2015) | 2015

Analysis of Performance Limiting Factors in Solid-Oxide Iron-Air Redox Battery Operated with Different Redox Couples

Xinfang Jin; Xuan Zhao; Ralph E. White; Kevin Huang


Chinese Science Bulletin | 2016

Multiphysics modeling of solid-oxide iron–air redox battery: analysis and optimization of operation and performance parameters

Xinfang Jin; Kevin Huang


Journal of The Electrochemical Society | 2015

Determination of Electrochemical Kinetic Property for Mixed Ionic Electronic Conductors from Electrical Conductivity Relaxation Measurements

Fei He; Xinfang Jin; Tingfang Tian; Hanping Ding; Robert D. Green; Xingjian Xue

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Kevin Huang

University of South Carolina

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Ralph E. White

University of South Carolina

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Xuan Zhao

University of South Carolina

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Jie Wang

University of South Carolina

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Meng Guo

University of South Carolina

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Cuijuan Zhang

University of South Carolina

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Long Jiang

University of South Carolina

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Tianrang Yang

University of South Carolina

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