镁基储氢材料课题组

发布时间:2024-10-15

一、课题组名称:镁基储氢材料课题组

二、课题组简介

1. 镁基储氢材料设计方法学

2. 镁基储氢材料吸放氢机制研究

3. 镁基储氢关键技术及示范应用

三、课题组组长

刘虎,中国科学院青海盐湖研究所研究员,中国科学院青年人才,青海省杰出青年。研究重点聚焦于氢能基础,长期致力于多尺度能源转化功能材料的设计与制备,用于制、储、运与用氢能的研究等方面,取得了一系列科研成果,发表SCI学术论文80余篇,以第一/通讯作者发表高水平SCI论文40余篇,其中包括J. Am. Chem. Soc.、Adv. Mater.、Nano Lett.、Adv. Funct. Mater. 、Chem. Eng. J.、 J. Mater. Chem. A 等高水平论文,其中10篇入选ESI高被引论文、2篇入选ESI热点论文,H指数为28(谷歌);授权专利10项;主持与参与省部级、中国科学院级与国家级氢能项目10余项。现担任Adv. Mater.、Adv. Funct. Mater.、J. Mater. Chem. A.、Chem. Eng. J.等期刊审稿人;《稀有金属》与Rare Metals青年编委;中国稀土学会第七届固体科学与新材料专业委员会委员,自然基金委/工信部项目函评专家。

学术兼职:

Rare Metals期刊青年编委;

中国稀土学会第七届固体科学与新材料专业委员会委员;

国家自然基金委/工信部项目函评专家。

联系方式:

电话(Tel.):15289383899 

邮编(P.C.):810008 

邮箱(Mail):liuhu@isl.ac.cn 

地址(Add.):青海省西宁市新宁路18号  

四、课题组副组长:李文锋 副研究员

联系方式:

电话(Tel.):15981798628 

邮编(P.C.):810008 

邮箱(Mail):liwf@isl.ac.cn 

地址(Add.):青海省西宁市新宁路18号  

五、课题组成员

六、课题组人才专员:李文锋

联系方式:

电话(Tel.):15981798628 

邮编(P.C.):810008 

邮箱(Mail):liwf@isl.ac.cn 

地址(Add.):青海省西宁市新宁路18号  

七、招聘信息

1. 直接/柔性引进高层次人才(第一,二层次) 2-3名。 要求年龄原则上不超过45周岁,在国内外高水平大学、科研机构等取得博士学位,在盐湖战略元素相关研究领域取得了突出学术贡献,具有5年及以上科研工作经历,主持过国家级、省部级及以上科研项目的人才,或具有相当水平的高层次人才。薪酬待遇参照青海盐湖所招聘政策。  

2. 直接引进青年才俊(第三,四层次) 2-3名。 要求年龄原则上不超过35周岁,在国内外高水平大学、科研机构等取得博士学位,在盐湖战略元素相关研究领域取得了突出学术贡献。薪酬待遇参照青海盐湖所招聘政策。  

八、生信息

课题组每学年招收博士研究生2名,硕士研究生2-4名。 

研究方向:镁基储氢材料设计方法学,镁基储氢材料吸放氢机制研究,镁基储氢关键技术及示范产业。

专业要求:无机化学、物理化学、材料与化工、材料物理与化学、化学工艺、化学工程、材料科学与工程、理论计算,以及符合研究方向要求的相关专业。

热忱欢迎有志学子到中国科学院青海盐湖研究所镁基储氢材料课题组攻读学位!   

九、课题组科研成果

1. 本课题组成员主持及参与各类科研项目如下:

[1] 青海省杰出青年基金,2025-ZJ-996J 2024-012026-12在研,刘虎主持。

[2] 中国科学院引进人才青年项目,E410GC032024-042027-04在研,刘虎主持

[3] 国家自然科学基金委员会,面上项目,522711892023-01-01 2026-12-31,在研,刘虎主持。

[4] 陕西省面上基金,2021JM-356, 已结题,刘虎主持。

[5] 中共陕西省委,陕西省三秦学者创全国一流团队,2021-01 2023-12已结题,刘虎主研

[6] 陕西省科技厅,陕西省创新团队,2021-01 2023-12,已结题,刘虎主研。

[7] 中国科学院引进人才青年项目, E455GC29012025-112025-11,在研,李文锋主持。

[8] 国家自然科学基金委员会,面上项目,42477035 2025-012028-12,在研,李文锋主持。

[9] 国家自然科学基金委员会,青年基金,419071402020-012023-01,结题,李文锋主持。

[10] 新疆维吾尔自治区重点研发专项,2022B02041-22022-122026-12,在研,李文锋第二课题主持。

[11] 新疆维吾尔自治区自然基金面上项目,2022D01A3452022-122025-12,在研,李文锋主持。

[12] 新疆维吾尔自治区自然基金面上项目,2018D01A382018-062021-06,结题,李文锋主持。

[13] 新疆维吾尔自治区重点实验室开放课题,2016D030032016-072019-07,结题,李文锋主持。

    [14] 中国科学院西部博士 B 类资助项目,Y6360612016-062019-06,结题,李文锋主持。

[15] 新疆维吾尔自治区重点研发专项,2017B030142017-062021-12,结题,李文锋主研。

[16] 国家重点研发计划,2018YFC18029022018-122022-15,结题,李文锋主研。

2. 本课题组成员发表学术论文如下:

[1] Chenlu Wang, Xiaojiang Hou*, Hu Liu*, Dongfeng Sun*, Fuping Li, Yu Ge, Duode Zhao, Danting Li, Xinlei Xie, Peixuan Zhu, Xiaohui Ye, Guoquan Suo, Guang Yang, Yanling Yang. Catalytic modifications to enhance the hydrogen storage behavior of Mg-based materials: single-component, multi-component single-phase and multiphase interfacial composite catalytic. J. Energy Chem. 2025, 110, 393-426.

[2] Ping Wu, Lirong Xiao, Manfu Jiang, Li Liu*, Cui Ni, Chuanxin Hou, Hu Liu, Wei Du*, Xiubo Xie*. Facile fabrication of hollow cubic NiCo2O4 loaded NiS towards hydrogen storage performances improvement of MgH2. Appl. Surf. Sci. 2025, 714, 164496.

[3] Tao Zhang, Geng Chen, Lechun Deng, Limin Zhang*, Hao Shen*, Qiang Chen, Hu Liu*, Hongjing Wu*. Frictionassisted liquid metaldriven anchoring of low redox potential metal ions for enhanced electromagnetic wave absorption. Adv. Sci. 2025, e11810.

[4] Lingjun Pei, Xiaoyu Liu, Xihong He, Wenfeng Li, Dongfeng Sun, Huidong Xie*, Hu Liu*. Copperbased highentropy oxide aerogel for chemoselective hydrogenation reaction. AIChE J. 2025, 71(5), e18748

[5] Hu Liu*, Ruoyan Miao, Xiaoying Zhao, Xiaolong Du, Lizhen Liu, Wenfeng Li, Zhenhui Ma, Liang Zhang*, Jianzheng He*, Zhichuan J. Xu*. Fully triazine-based covalent framework for antibacterial phototreatment with high biosafety. ACS Appl. Mater. Interfaces. 2025, 17(34), 48184-48194.

[6] Ming Yang, Ren Zhou, Yuxin Wang*, Fuying Wu, Hu Liu*, Hong Li, Liuting Zhang*. Incorporating in-situ formed Ti3+and oxygen vacancies to TiO2 via Ni loading for superior hydrogen storage in magnesium hydride. Int. J. Hydrogen Energy. 2025, 169, 151158.

[7] Xinyu Liu, Xixi Meng, Tao Zhong, Yuxin Wang*, Fuying Wu, Hu Liu*, Hong Li, Liuting Zhang*. Polymeric carbon nitride supported single-phase Ni with exceptional catalytic effect on MgH2 for hydrogen storage. J. Alloys Compd. 2025, 1032, 181259.

[8] Ping Wu, Li-Rong Xiao, Cheng-Yu Ge, Cui Ni, Guo-Rong Wang, Chuan-Xin Hou, Hu Liu*, Zhen-Hui Ma*, Xin Liu, Wei Du*, Xiu-Bo Xie*. Construction of NiS/carbon fibers confined NiS composite: high catalytic activity for enhancing the hydrogen storage performances of MgH2. Rare Met. 2025.

[9] Xinlei Xie, Xiaojiang Hou*, Chenlu Wang, Duode Zhao, Danting Li, Peixuan Zhu, Xiaohui Ye, Guoquan Suo*, Hu Liu*, Dongfeng Sun, Fuping Li, Yanling Yang*. Sandwich-like interlayer-structured TM/Ti3C2T (TM=Co, Fe, Ni) synergistic catalysts for accelerating hydrogen storage kinetics of MgH2. Int. J. Hydrogen Energy. 2025, 153, 150238.

[10] Hui Guo, Xihong He, Xiaoyu Liu, Wenfeng Li, Huidong Xie, Zuobin Tang, Liuhui Zhao*, Hu Liu*. Stabilizing Ag/CuO core/shell nanotriangles for selective hydrogenation reaction. Ind. Eng. Chem. Res. 2025, 64(15), 7930-7936.

[11] Fenyang Tian, Shuo Geng, Menggang Li, Longyu Qiu, Fengyu Wu, Lin He, Jie Sheng, Xin Zhou, Zhaoyu Chen, Mingchuan Luo, Hu Liu, Yongsheng Yu*, Weiwei Yang*, Shaojun Guo*. Synergetic Oxidized Mg and Mo Sites on Amorphous Ru Metallene Boost Hydrogen Evolution Electrocatalysis. Adv. Mater. 2025, 37(18), e2501230.

[12] Changyu Hu, Huidong Xie*, Cheng Chen, Xiaoyu Liu, Hao Chen*, Lingyi Meng, Hu Liu. Rapid carbothermic shock synthesis of high-entropy oxides as highly stable oxygen evolution reaction catalysts. J. Power Sources. 2025, 655, 237967.

[13] Yuheng Zhang, Gangyi Zhang*, Liying Zhu, Yaxuan Li, Tongshu Zhang, Fulong Hao, Lingyi Meng, Huidong Xie, Hu Liu, Zuobin Tang*. Blue-excited broadband near-infrared emission from zero-dimensional organic-inorganic hybrid metal halides. J. Colloid Interface Sci. 2025, 686, 37-44.

[14] Fu Wang, Xia Zeng, Lingyi Meng*, Lingxia Jin, Zuobin Tang, Hu Liu, Huidong Xie*. High-Efficiency Green-Emission of an Organophosphorus Manganese Chloride for White LED and X-ray Imaging Applications. Inorg. Chem. 2025, 64(16), 8031-8039.

[15] Lin He, Menggang Li, Longyu Qiu, Shuo Geng, Yequn Liu, Fenyang Tian, Mingchuan Luo, Hu Liu, Yongsheng Yu*, Weiwei Yang*, Shaojun Guo*. Single-atom Mo-tailored high-entropy-alloy ultrathin nanosheets with intrinsic tensile strain enhance electrocatalysis. Nat. Commun. 2024, 15(1), 2290.

[16] Hui Guo, LingJun Pei, ShaoLei Xie, MengQi Shen, Yong Yang, Hu Liu*. Copperbased nanocatalysts toward chemoselective hydrogenation reaction. Cmat. 2024, 1(1), e9.

[17] Xueqian Li, Shaolei Xie, Huidong Xie*, Mengqi Shen, Zhenhui Ma, Hu Liu. Exploring biomedical applications with silver and copper nanotechnology. Cmat. 2024, 1(2), e20.

[18] Hu Liu*, Xueqian Li, Xiaoying Zhao, Min Zhang, Xinhua Liu, Shichun Yang, Hongjing Wu*, and ZhenhuiMa*. Large Annular Dipoles Bounded between Single-Atom Co and Co Cluster for Clarifying Electromagnetic Wave Absorbing Mechanism. Adv. Funct. Mater. 2023, 2304442.

[19] Hu Liu*, Rongrong Jia, Chuanjian Qin, Qin Yang, Zuobin.Tang, Menggang Li*, Zhenhui. Ma*. Anti-COPoisoning FePtRh Nanoflowers with Rh-Rich Core and Fe-Rich Shell Boost Methanol Oxidatio Electrocatalysis. Adv. Funct. Mater. 2022, 2210626.

[20] Hu Liu*, Qian Lei, Ruoyan.Miao, Mingzi.Sun, Chuanjian Qin, Liang Zhang, Gan Ye, YaoYao*, Bolong Huang*, Zhenhui Ma*. Asymmetric Coordination of Single-Atom Co Sites Achieves Efficien Dehydrogenation Catalysis. Adv. Funct. Mater. 2022, 2207408.

[21] Guanghui Han#, Menggang Li#, Hu Liu#, Weiyu Zhang, Lin He, Fenyang Tian, Yequ Liu, Yongsheng Yu*, Weiwei Yang*, Shaojun Guo*. Short-Range Diffusion Enables General Synthesis of Medium-Entropy Alloy Aerogels. Adv. Mater. 2022, 2202943.

[22] Hu Liu, Xuexiang Li, Zhenhui Ma, Mingzi Sun, Menggang Li, Zhenyu Zhang, Liang Zhang, Zuobi Tang, Yao Yao, Bolong. Huang, and Shaojun Guo. Atomically Dispersed Cu Catalyst for Efficien Chemoselective Hydrogenation Reaction. Nano Lett. 2021, 21, 10284-10291.

[23] Meng.qi Shen#, Hu Liu#, Chao Yu, Zhouyang Yin, Michelle Muzzio, Junrui Li, Zheng Xi, Yongsheng Yu*, Shouheng Sun*. Room-Temperature Chemoselective Reduction of 3-Nitrostyrene to 3-Vinylaniline by Ammonia Borane over Cu Nanoparticles. J. Am. Chem. Soc. 2018, 140, 16460-16463.

[24] Lingjun Pei, Shaolei Xie, Hui Guo, Xueqian Li, Huidong Xie, Zuobin Tang, Guanghui Han, Zhonghong Xia*, Menggang Li*, Hu Liu*. Ultrathin porous PdPtNi nanosheets as efficient electrocatalysts for alcohol oxidation reactions. Chem. Eng. J. 2024, 483, 149113.

[25] Qian Lei, Ruoyan Miao, Xueqian Li, Xiaoyu Liu, Yuanyuan Li, Zhangwei He, Huidong Xie, Fang Song, Xiang Liu*, Hu Liu*. Efficient hydrogen production from formic acid over Ag@ AgPd nanotriangulars at room temperature. Fuel 2023, 355, 129539.

[26] Hu Liu*, Xuexiang Li, Xinyang Liu, Zhenhui. Ma, Zhouyang Yin, Weiwei Yang, Yongsheng Yu*. Schiff-base-rich g-CxN4 supported PdAg nanowires as an efficient Mott–Schottky catalyst boosting photocatalytic dehydrogenation of formic acid. Rare Metals 2021, 40, 808-816.

[27] Ruoyan Miao, Hu Liu*, Qian Lei, Lvling Zhong, Liang Zhang, Jianzheng He, Zhenhui Ma, Yao Yao. Single-organic component g-C3.6N4 achieves superior photoactivity antibacterial. Chem. Eng. J. 2022, 440, 135873.

[28] Hu Liu, Bolong Huang, Jinhui Zhou, Kai Wang, Yongsheng Yu, Weiwei Yang, Shaojun Guo. Enhanced electron transfer and light absorption on imino polymer capped PdAg nanowire networks for efficient room-temperature dehydrogenation of formic acid. J. Mater. Chem. A 2018, 6, 1979-1984.

[29] Hu Liu, Yong Guo, Yongsheng Yu, Weiwei Yang, Mengqi Shen, Xinyang Liu, Shuo Geng, Junrui Li, Chao Yu, Zhouyang Yin, Haibo Li. Surface Pd-rich PdAg nanowires as highly efficient catalysts for dehydrogenation of formic acid and subsequent hydrogenation of adiponitrile. J. Mater. Chem. A 2018, 6, 17323-17328.

[30] Hu Liu, Xinyang Liu, Yongsheng Yu, Weiwei Yang, Ji Li, Ming Feng, Haibo Li. Bifunctional networked Ag/AgPd core/shell nanowires for the highly efficient dehydrogenation of formic acid and subsequent reduction of nitrate and nitrite in water. J. Mater. Chem. A 2018, 6, 4611-4616.

3. 本课题组成员授权专利如下:

[1] 刘虎, 郭珲, 赵刘会, 王斌。 一种还原硝酸根的水处理装置。 授权日: 2024/06/14, 授权号: ZL202322997438.9.

[2] 刘虎, 陈双莉, 孙小琴。 一种单原子铜催化剂及其克级制备方法和选择性还原功能有机分子的应用。 授权日: 2022/09/27, 授权号: ZL202010851198.X.

[3] 刘虎, 陈双莉, 孙小琴。 一种纳米线网络结构的铜基催化剂及其制备方法和应用。 授权日: 2022/11/04, 授权号: ZL202010819388.3.

[4] 刘虎, 苗若岩, 张良。 一种席夫碱扩大共轭性的氮化碳伤口敷料及其制备方法。 授权日: 2022/08/02, 授权号: ZL202110790619.7.

[5] 刘虎, 苗若岩, 张良。 一种纳米高熵氧化物气凝胶及其制备方法。 授权日:2023/04/21, 授权号: ZL202210096551.7.

[6] 于永生,刘虎,杨微微。 一种聚乙烯吡洛烷亚胺高分子化合物及其制备方法和应用。 授权号:ZL201610971419.0.

[7] 于永生,刘虎,杨微微。 一种具有褶皱状石墨相氮化碳的制备方法及其应用。 授权号:ZL201710704599.0.

[8] 李文锋,潘响亮,宋文娟,张道勇。 基于高剪切乳化分散的农田土壤聚乙烯微塑料分离方法, 授权号:ZL201710613805.7.

[9] 李文锋,多佳,裴亮,杨帆,热合曼江·吾甫尔,膜下滴灌模式土壤中地膜微塑料纵向迁移扩散的模拟装置,授权号:ZL20232 2141181.7.



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