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国家重点基础研究发展计划(2012CB215500)

作品数:51 被引量:178H指数:6
相关作者:裴普成张新波侯明郭建伟邵志刚更多>>
相关机构:中国科学院中国科学院大学清华大学更多>>
发文基金:国家重点基础研究发展计划国家自然科学基金国家高技术研究发展计划更多>>
相关领域:电气工程理学化学工程动力工程及工程热物理更多>>

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51 条 记 录,以下是 1-10
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Mechanisms of Accelerated Degradation in the Front Cells of PEMFC Stacks and Some Mitigation Strategies
2013年
The accelerated degradation in the front ceils of a polymer electrolyte membrane fuel cell(PEMFC) stack seriously reduces the reliability and durability of the whole stack. Most researches only focus on the size and configuration of the gas intake manifold, which may lead to the maldistribution of flow and pressure. In order to find out the mechanisms of the accelerated degradation in the front cells, an extensive program of experimental and simulation work is initiated and the results are reported. It is found that after long-term lifetime tests the accelerated degradation in the front cells occurs in all three fuel cell stacks with different flow-fields under the U-type feed configuration. Compared with the rear cells of the stack, the voltage of the front cells is much lower at the same current densities and the membrane electrode assembly(MEA) has smaller active area, more catalyst particle agglomeration and higher ohmic impedance. For further investigation, a series of three dimensional isothermal numerical models are built to investigate the degradation mechanisms based on the experimental data. The simulation results reveal that the dry working condition of the membrane and the effect of high-speed gas scouting the MEA are the main causes of the accelerated degradation in the front cells of a PEM fuel cell stack under the U-type feed configuration. Several mitigation strategies that would mitigate these phenomena are presented: removing cells that have failed and replacing them with those of the same aging condition as the average of the stack; choosing a Z-type feed pattern instead of a U-type one; putting several air flow-field plates without MEA in the front of the stack; or exchanging the gas inlet and outlet alternately at a certain interval. This paper specifies the causes of the accelerated degradation in the front cells and provides the mitigation strategies.
LI PengchengPEI PuchengHE YonglingYUAN XingCHAO PengxiangWANG Xizhong
以细菌纤维素为前驱体简便制备氮掺杂碳纤维气凝胶作为高效氧还原催化剂(英文)被引量:9
2014年
数十年来, 碳气凝胶因其在催化剂载体、电容器和锂电池电极材料以及吸附剂等领域的潜在应用而备受关注. 然而, 传统碳气凝胶的制备往往使用昂贵且有毒的前驱体, 其方法也较为复杂, 不利于大规模生产及应用. 本文介绍了一种以细菌纤维素为前驱体制备氮掺杂碳纤维气凝胶的方法.该方法廉价高效, 简单易行且对环境无害. 所制气凝胶具有密度低、孔隙度高、比表面积大以及导电性良好等优点.它继承了细菌纤维素生物质优异的三维交联多孔结构的特点, 可直接用作氧还原催化剂, 表现出优异的催化性能,预示着其广泛的应用前景.这在该领域的应用报道尚属首次.
孟凡陆李霖吴中钟海霞李建忱鄢俊敏
关键词:氧还原反应细菌纤维素
Preparation and characterization of Ti_(0.7)Sn_(0.3)O_2 as catalyst support for oxygen reduction reaction
2014年
Sn-doped TiO2 nanoparticles with high surface area of 125.7 m2·g-1 are synthesized via a simple one-step hydrothermai method and explored as the cathode catalyst support for proton exchange membrane fuel cells.The synthesized support materials are studied by X-ray diffraction analysis,energy dispersive X-ray spectroscopy and transmission electron microscopy.It is found that the conductivity has been greatly improved by the addition of 30 mol%Sn and Pt nanoparticles are well dispersed on Ti0.7Sn0.3O2 support with an average size of 2.44 run.Electrochemical studies show that the Ti0.7Sn0.3O2 nanoparticles have excellent electrochemical stability under a high potential compared to Vulcan XC-72.The as-synthesized Pt/Ti0.7Sn0.3O2 exhibits high and stable electrocatalytic activity for the oxygen reduction reaction.The Pt/Ti0.7Sn0.3O2 catalyst reserves most of its electrochemically active surface area(ECA),and its half wave potential difference is 11 mV,which is lower than that of Pt/XC-72(36 mV) under 10 h potential hold at 1.4 V vs.NHE.In addition,the ECA degradation of Pt/Ti0.7Sn0.3O2is 1.9 times lower than commercial Pt/XC-72 under 500 potential cycles between 0.6 V and 1.2 V vs.NHE.Therefore,the as synthesized Pt/Ti0.7Sn0.3O2 can be considered as a promising alternative cathode,catalyst for proton exchange membrane fuel cells.
Yuan GaoMing HouZhigang ShaoChangkun ZhangXiaoping QinBaolian Yi
关键词:TINSUPPORTDURABILITY
Self-standing rationally functionalized graphene as high-performance electrode materials for supercapacitors被引量:2
2014年
Supercapacitors(SCs) have attracted much attention as one of the alternative energy devices due to their high power performance,long cycle life,and low maintenance cost.Graphene is considered as an innovative and promising material due to its large theoretical specific surface area,high electrical conductivity,good mechanical properties and chemical stability.Herein,we report an effective strategy for elaborately constructing rationally functionalized self-standing graphene(SG) obtained from giant graphene oxide(GGO) paper followed by an ultrarapid thermal-processing.This treatment results in both the exfoliation of graphene sheets and the reduction of GGO by elimination of oxygencontaining groups.The as-prepared SG electrode materials without additive and conducting agent provide an excellent combination of the electrical double layer capacitor(EDLC) and pseudocapacitor(PC) functions and exhibit superior electrochemical performance,including high specific capacitance,good rate capability and excellent cycling stability when investigated in three-electrode electrochemical cells.
Delong MaZhong WuZhanyi Cao
关键词:SUPERCAPACITORS
Pt/WO_3/C nanocomposite with parallel WO_3 nanorods as cathode catalyst for proton exchange membrane fuel cells被引量:5
2015年
Pt/WO3/C nanocomposites with parallel WO3 nanorods were synthesized and applied as the cathode catalyst for proton exchange membrane fuel cells (PEMFCs). Electrochemical results and single cell tests show that an enhanced activity for the oxygen reduction reaction (ORR) is obtained for the Pt/WO3/C catalyst compared with Pt/C. The higher catalytic activity might be ascribed to the improved Pt dispersion with smaller particle sizes. The Pt/WO3/C catalyst also exhibits a good electrochemical stability under potential cycling. Thus, the Pt/WO3/C catalyst can be used as a potential PEMFC cathode catalyst.
Meiling DouMing HouZhilin LiFeng WangDong LiangZhigang ShaoBaolian Yi
关键词:CATALYST
聚苯胺增强Pt/C催化剂活性和稳定性研究被引量:4
2015年
目的制备一种具有高稳定性和高催化活性的Pt/C@PANI"核/壳"结构催化剂。方法利用原位化学氧化聚合法制备聚苯胺修饰Pt/C@PANI"核/壳"结构催化剂,采用循环伏安加速寿命实验,结合电化学活性表面积、氧还原活性、X-射线光电子能谱和透射电镜,考察所制备催化剂的活性和稳定性,通过密度泛函理论探究PANI增强Pt/C催化剂活性和稳定性的量子化学本质原因。结果电化学测试表明, Pt/C@PANI催化剂的催化活性与聚苯胺包覆层含量和厚度密切相关,Pt/C@PANI(30%)催化剂具有最好的催化活性,其质量比活性和比表面比活性分别为商业化Pt/C催化剂的1.6和1.8倍。加速寿命实验表明,Pt/C@PANI(30%)催化剂具有很好的稳定性,经过1500圈CV扫描后,其电化学活性表面积仅下降了30%,而商业化Pt/C催化剂降低了83%。理论计算表明,PANI将电子转移给载体C,导致自身空穴增加,PANI部分氧化,导电性增强;PANI的存在使Pt/C@PANI体系的HOMO能级升高,减小了与氧气分子LUMO能级的差异,有利于电子从催化剂HOMO转移到氧分子的LUMO轨道,使得氧容易得到电子;PANI吸附后,Pt原子d带中心显著降低,利于中间物种的脱附,催化活性更高。结论 PANI包覆层抑制了Pt纳米粒子在载体表面的迁移、团聚长大和溶解/再沉积,有效地解决了Pt/C催化剂的Ostwald肿大,催化剂的活性和稳定性得到显著提升。
陈四国薛云张文贵李莉丁炜齐学强魏子栋
关键词:燃料电池氧还原反应电催化剂聚苯胺
磺化聚醚醚酮/Nafion复合质子交换膜的制备及性能被引量:3
2018年
以磺化聚醚醚酮(SPEEK)为原料,采用静电纺丝技术制备了SPEEK/Nafion复合膜(SP/NF),并采用热喷涂法在SP/NF膜上喷涂Nafion溶液制备了SPEEK/Nafion/Nafion复合膜(SP/NF/NF)。通过扫描电镜测试及红外光谱测试等方法对膜的物理结构进行了表征,同时测试了膜的吸水率、离子交换容量及质子传导率,并将复合膜组装成单电池测试了电池性能。结果表明,SP/NF/NF复合膜的质子传导率及单电池测试的最高功率密度均高于Nafion 212膜,且复合膜的成本低于Nafion膜,显示了其作为质子交换膜应用于燃料电池系统的潜能。
王禛侯明侯明王胜利邵志刚
关键词:磺化聚醚醚酮静电纺丝热喷涂
Effects of substrate and transfer on CVD-grown graphene over sapphire-induced Cu films被引量:4
2014年
We differentiated the effects of Cu films deposited on single crystalline a-,r-,and c-plane sapphire substrates upon graphene films synthesized with atmospheric pressure chemical vapor deposition(CVD).The data illustrate that the realization of high-crystalline Cu film is dependent not only on the crystallinity of underlying substrate,but also on the symmetric match of crystallographic geometry between metal film and substrate.We also systematically investigated the effects of PMMA removal on the Raman ID/IG and IG/I2D values of transferred graphene.The results reveal that different PMMA removal methods do not alter the ID/IG values;instead,the residue of PMMA increases the IG/I2D values and the thermal decomposition of PMMA leads to higher IG/I2D values than the removal of PMMA with acetone.The effects of PMMA removal on variations of the Raman spectra are also discussed.
HU BaoShanWEI ZiDongAGO HirokiJIN YanXIA MeiRongLUO ZhengTangPAN QingJiangLIU YunLing
进气温度对质子交换膜燃料电池性能影响的试验研究被引量:3
2016年
为了研究不同进气温度对质子交换膜燃料电池性能的影响.首先分析了质子交换膜燃料电池反应的基本原理;其次建立了一个质子交换膜燃料电池性能测试平台,通过控制空气和氢气侧压力为0.1 MPa、燃料电池工作温度为60℃时,同时改变阴极和阳极侧进气温度来对一个由十片单电池组成的电堆进行实验.实验结果表明:质子交换膜燃料电池性能受进气温度影响较大,在燃料电池进气压力和工作温度一定的情况下,随着进气流量的增加,进气温度随之升高,电池性能也将得到明显改善;其次,通过比较同一进气压力、进气温度和工作温度下电堆的一致性,得出第十片单电池性能衰减较快.
刘永峰王娜
关键词:质子交换膜燃料电池进气温度
纳米铂在碳纳米管的原位担载及其电化学性能
2014年
采用两步法进行纳米铂在碳纳米管表面的原位担载。首先利用柠檬酸(CA)对苯胺(ANI)自组装作用,制备PANI/CNT复合载体;进而比较了柠檬酸络合及未络合氯铂酸前驱体两种方式,通过原位还原铂,制备纳米铂-聚苯胺-碳纳米管(Pt-PANI/CNT)复合材料。结果表明,CA在初期利于PANI完整包覆CNT,且CA络合氯铂酸方式在后期利于纳米铂均匀可控担载,从而所得Pt-PANI/CNT材料表现出高电化学活性面积、甲醇的稳定电催化活性。对拓展复合纳米结构及性能提出了可行路线,利于未来探索。
胡天航郭凯郭建伟解孝林
关键词:甲醇电氧化纳米铂碳纳米管聚苯胺柠檬酸
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