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Dive into the research topics where Baojia Xia is active.

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Featured researches published by Baojia Xia.


IEEE\/ASME Journal of Microelectromechanical Systems | 2006

A Self-Breathing Proton-Exchange-Membrane Fuel-Cell Pack With Optimal Design and Microfabrication

Cong Chen; Xinxin Li; Tao Wang; Xigui Zhang; Jufeng Li; Peitao Dong; Dan Zheng; Baojia Xia

An entire set of silicon-based microtechnologies is developed for a high-performance H


Ionics | 2016

Al2O3/poly(ethylene terephthalate) composite separator for high-safety lithium-ion batteries

Weibiao Li; Xiaozhe Li; Anbao Yuan; Xiaohua Xie; Baojia Xia

_2/


Ionics | 2014

The effects of Li2CO3 particle size on the properties of lithium titanate as anode material for lithium-ion batteries

Wei Liu; Jian Zhang; Qian Wang; Xiaohua Xie; Yuwan Lou; Baojia Xia

air self-breathing microproton-exchange-membrane fuel-cell (


Ionics | 2017

Composition, structure, and performance of Ni-based cathodes in lithium ion batteries

Chunhui Cao; Jian Zhang; Xiaohua Xie; Baojia Xia

mu


Journal of Chemistry | 2013

The Characterization of Lithium Titanate Microspheres Synthesized by a Hydrothermal Method

Wei Liu; Yu Wang; Xiaolin Jia; Baojia Xia

PEMFC) pack. For improving the performance of the silicon-based


The Open Fuels & Energy Science Journal | 2008

Investigation of a Micro PEM Fuel Cell Pack Based on MEMS Technology

Tao Wang; Xigui Zhang; Jian Zhang; Dan Zheng; Cong Chen; Xinxin Li; Chuanzheng Yang; Baojia Xia

mu


international conference on solid state sensors actuators and microsystems | 2005

H/sub 2//air self-breathing micro PEM fuel cell stacks with MEMS fabrication technology

Cong Chen; Tao Wang; Peitao Dong; Xigui Zhang; Jufeng Li; Dan Zheng; Baojia Xia; Xinxin Li

PEMFC, microflow-fields together with the electrodes at the cathode and the anode are optimally designed. For simplifying the microfabrication, a bulk-micromachining process is developed for fabricating both the cathode and the anode. Besides that the optimally designed flow-fields and electrodes are accurate fabricated, both the cathodes and the anodes can be fabricated in a same wafer with identical process. Optimized packaging conditions, such as the compression ratio and the current-collecting layer for the membrane electrode assembly (MEA), are experimentally obtained for both high fuel-cell performance and reliable silicon micropackaging. Attributed to the optimized design and the precise microfabrication, the peak power-density of the self-breathing


Journal of Power Sources | 2007

Carbon-supported Pd-Co bimetallic nanoparticles as electrocatalysts for the oxygen reduction reaction

Wenming Wang; Dan Zheng; Chong Du; Zhiqing Zou; Xigui Zhang; Baojia Xia; Hui Yang; Daniel L. Akins

mu


Electrochimica Acta | 2008

Low temperature preparation of carbon-supported PdCo alloy electrocatalysts for methanol-tolerant oxygen reduction reaction

Xiaowei Li; Qinghong Huang; Zhiqing Zou; Baojia Xia; Hui Yang

PEMFC is measured as high as 141.0–147.2 mW/cm


Solid State Ionics | 2005

Synthesis and electrochemical characteristics of layered LiNi0.6Co0.2Mn0.2O2 cathode material for lithium ion batteries

Hui Cao; Yao Zhang; Jian Zhang; Baojia Xia

^-2

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Jian Zhang

Chinese Academy of Sciences

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Xiaohua Xie

Chinese Academy of Sciences

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Yuwan Lou

Chinese Academy of Sciences

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Xigui Zhang

Chinese Academy of Sciences

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Zhiqing Zou

Chinese Academy of Sciences

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Hui Yang

Chinese Academy of Sciences

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Jian Yan

Chinese Academy of Sciences

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Dan Zheng

Chinese Academy of Sciences

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Haohan Liu

Chinese Academy of Sciences

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Qian Wang

Chinese Academy of Sciences

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