• 姓名: 鲜海洋
  • 性别: 男
  • 职务: 
  • 职称: 副研究员
  • 学历: 博士研究生
  • 电子邮件: xianhaiyang@gig.ac.cn
    简  历:
  • 鲜海洋,副研究员,硕士生导师。2012年和2015年于西南科技大学分别获学士和硕士学位,2018年获中国科学院大学博士学位。现任中国矿物岩石地球化学学会矿物物理矿物结构专业委员会秘书、陨石及天体化学专业委员会委员、新矿物及矿物命名专业委员会委员,《地球化学》和《矿物岩石地球化学通报》期刊青年编委。主要以电子显微术等先进实验手段与密度泛函理论等模拟计算方法相结合,研究矿物结构与矿物表/界面的微观反应机制、矿物表/界面反应的成矿作用和行星演化环境效应。

    社会任职:
    研究方向:
  • 1. 月球与行星矿物学

    2. 矿物结构的电子显微表征技术

    获奖及荣誉:
  • 1. 中国科学院广州分院年度优秀青年科技工作者(2024年)

    2. 中国科学院青年创新促进会会员(2021353

    3. 中国科学院广州地化所涂光炽优秀青年学者A类(2020年)

    4. 广东省100位博士博士后创新人物(2019年)

    代表论著:
  • 2025

    1. He Z., Xian H.*, Zhu J., Liang X. and He H. (2025) Revealing the reaction pathways of reactive oxygen species anaerobic generation at pyrite-water interface using the ReaxFF force field. Geochimica et Cosmochimica Acta. doi: 10.1016/j.gca.2025.11.018.

    2. Xian H., Li S., Yang Y., Zhu J.*, Lin X., Xi J., Yang W., Xiao Y., Cao Y., Zhao C., Zhang M., Zhang L., Zhang Y., Tsuchiyama A., Lin M., He H. and Xu Y.-G. (2025) Highly oxidized exogenous materials in Chang’e 6 sample returned from the lunar farside South Pole-Aitken basin. Earth and Planetary Science Letters 668, 119556.

    3. Li S., Wen K., Yang Y., Lin X., Cao Y., Xiao Y., Xian H.*, Zhu J. and He H. (2025) Quantification of ferric iron content in minerals via the STEM-EELS-mapping method. J. Anal. At. Spectrom. 40, 1954–1963.

    4. Yang H., Xian H.*, Zhu J., Wu X., Li S., Lin X., Xi J., Yang Y. and He H. (2025) Impact-induced fayalite glass from Chang’e-5 regolith revealed by electron pair distribution function and ReaxFF molecular dynamics. Icarus 438, 116643.

    5. Lin J., Xian H.*, Yang Y., Li S., Xi J., Lin X., Xiao Y., Chen S., Zhao C., Zhang M., Tsuchiyama A., Zhu J.*, He H. and Xu Y.-G. (2025) Differences in space weathering between the near and far side of the Moon: evidence from Chang’e-6 samples. National Science Review 12, nwaf087.

    2024

    6. He Z., Xian H.*, Xu L., Zhu J., Lin M., Liang X. and He H. (2024) Modified spectrophotometry for micromolar H2O2 determination in iron-containing solutions with leuco crystal violet under both aerobic and anaerobic conditions. Anal. Methods 16, 7460–7467.

    7. Xian H., Zhu J.*, Yang Y., Li S., Xi J., Lin X., Xing J., Wu X., Yang H., He H. and Xu Y. (2024) Formation of nanophase metallic iron through charge disproportionation of ferrous iron during micrometeoroid impact‐induced splash melting. Meteorit & Planetary Scien 59, 1692–1704.

    8. 杨宜坪, 林枭举, 鲜海洋*, 陈生东, 袁玉环, 席佳鑫, 朱建喜, 何宏平 (2024) 三维电子衍射:纳米矿物晶体结构分析的变革性技术. 矿物学报, 1–14.

    2023

    9. Xian H., Zhu J., Yang Y., Li S., Lin X., Xi J., Xing J., Wu X., Yang H., Zhou Q., Tsuchiyama A., He H.* and Xu Y.-G.* (2023) Ubiquitous and progressively increasing ferric iron content on the lunar surfaces revealed by the Chang’e-5 sample. Nat Astron 7, 280–286.

    10. Xian H., Yang Y., Zhu J.*, Lin X., Liang X., Zhu R. and He H. (2023) Surface-dependent generation of reactive oxygen species at pyrite–water interface. AIP Advances 13, 115229.

    2022

    11. Xian H., He H.*, Zhu J., Qiu K., Li Y., Yang Y., Xing J., Tan W., Tsuchiyama A., Yastake M., Enju S., Miyake A. and Zhu R. (2022) Hyperenrichment of gold in pyrite induced by solid-state transportation. Commun Earth Environ 3, 1–6.

    12. Xian H., Yang Y., Li S., Zhu J.*, Li R., Xing J., Xi J., Yang H., Lin X., Wu X. and He H. (2022) Three-dimensional Analyses of Geological Materials on Nanoscale by Electron Tomography. Atom. Spectrosc. 43, 272–283.

    13. Tang H., Wu X., Yang Y., Xian H.*, Zhu J., Fan M., Xi X., Wei J., Du R., Liu H. and Zhu R. (2022) Site-specific interactions enhanced dissolution of natural aragonite (110) surfaces in succinic acid (SUC) solutions: Implications for the oceanic aragonite dissolution fluxes. Geochimica et Cosmochimica Acta 319, 135–150.

    14. 何昭露, 杜润香, 鲜海洋*, 林枭举, 吴逍, 朱建喜, 何宏平 (2022) 无氧条件下黄铁矿表面的羟基化与自氧化. 地球化学 51, 283–293.

    15. 唐红梅, 鲜海洋*, 朱建喜, 李琴, 黎建刚, 黄振雄 (2022) 文石与方解石在含Cu2+溶液中的界面溶解—再沉淀. 地球化学 51, 251–260.

    2021

    16. Du R., Xian H.*, Wu X., Zhu J., Wei J., Xing J., Tan W. and He H. (2021) Morphology dominated rapid oxidation of framboidal pyrite. Geochem. Persp. Let. 16, 53–58.

    17. Xian H., Wu X., Zhu J.*, Du R., Wei J., Zhu R. and He H. (2021) Environmental-sulfur-controlled surface properties of pyrite: a first principles PBE + U study. Phys Chem Minerals 48, 20.

    2021以前

    18. Tang H., Wu X., Xian H.*, Zhu J., Wei J., Liu H. and He H. (2020) Heterogeneous Nucleation and Growth of CaCO3 on Calcite (104) and Aragonite (110) Surfaces: Implications for the Formation of Abiogenic Carbonate Cements in the Ocean. Minerals 10, 294.

    19. Tang H., Xian H.*, He H., Wei J., Liu H., Zhu J. and Zhu R. (2019) Kinetics and mechanisms of the interaction between the calcite (10.4) surface and Cu2+-bearing solutions. Science of The Total Environment 668, 602–616.

    20. Xian H., He H., Zhu J., Du R., Wu X., Tang H., Tan W., Liang X., Zhu R. and Teng H. H. (2019) Crystal habit-directed gold deposition on pyrite: Surface chemical interpretation of the pyrite morphology indicative of gold enrichment. Geochim. Cosmochim. Acta 264, 191–204.

    21. Xian H., Zhu J.*, Tan W., Tang H., Liu P., Zhu R., Liang X., Wei J., He H. and Teng H. H. (2019) The mechanism of defect induced hydroxylation on pyrite surfaces and implications for hydroxyl radical generation in prebiotic chemistry. Geochim. Cosmochim. Acta 244, 163–172.

    22. Xian H., Du R., Zhu J.*, Chen M., Tan W., Zhu R., Wei J. and He H. (2018) Hydration induced bandgap shift at pyrite-water interface. Applied Physics Letters 113, 123901.

    23. Xian H., Zhu J.*, Liang X. and He H. (2016) Morphology controllable syntheses of micro-and nano-iron pyrite mono-and poly-crystals: a review. RSC Advances 6, 31988–31999.

    24. Xian H., Zhu J.*, Tang H., Liang X., He H. and Xi Y. (2016) Aggregative growth of quasi-octahedral iron pyrite mesocrystals in a polyol solution through oriented attachment. CrystEngComm 18, 8823–8828.

    承担科研项目情况:
  • [1]  国家自然科学基金青年科学基金项目B类,42522801,月球矿物化学,2026.01-2028.12200万元,主持,在研

    [2]  中国科学院战略性先导科技专项(B类)深地挥发份循环的成矿驱动机制及资源效应之课题:深地纳米矿物晶体结构快速解析仪器研制,XDB08401032024.6-2029.5853万元,主持,在研

    [3]  中国科学院院长基金课题,QYJ-2025-01,嫦娥六号月球样品岩石矿物学与物质成分,2025.01-2027.12280万元,主持,在研

    [4]  国家自然科学基金重大研究计划培育项目,92579103,挥发份在深地矿物晶格赋存状态的三维电子衍射表征,2026.01-2028.1280万元,主持,在研

    [5]  广东省基础与应用基础研究基金杰出青年项目:黄铁矿中不可见金的原子尺度赋存状态与可利用性,2022.01-2025.12100万元,主持,在研

    [6]  国家自然科学基金青年科学基金项目,42102028;环境氧浓度对黄铁矿-水界面产生活性氧的制约,2022.01-2024.1230万元,主持,结题

    [7]  中国科学院青年创新促进会人才项目,2021.01-2024.1280万元,主持,完成

    [8]  国家自然科学基金专项项目,42241127,嫦娥五号月海玄武岩冲击变质特征的晶体结构与取向记录,2023.01-2023.1225万元,主持,结题

    [9]  广州市科技计划项目,2022.04-2024.03,卡林型金矿含砷黄铁矿中金赋存状态的电子断层三维重构(项目编号:202201010385),5万元,主持,结题

    [10]  国家重点研发计划课题:成矿关键元素赋存状态及成矿实验与模拟,2019.09-2024.02528万元,参加,结题

    [11]  国家自然科学基金重大研究计划重点支持项目:镁铁-超镁铁质岩中铂族元素和钴的赋存状态研究,2020.01-2023.12313万元,参加,结题

    [12]  中国博士后科学基金面上二等资助项目:黄铁矿/水界面电子结构对其氧化还原反应性的制约机制,2018.09-2020.075万元,主持,结题

    [13]  中国博士后科学基金特别资助(站中)项目:表面位点电子结构对水在黄铁矿表面反应行为的制约机制,2019.04-2020.0718万元,主持,结题

    [14]  广东省基础与应用基础研究基金面上项目:AuAs元素在黄铁矿中晶格占位及电子结构,2019.10-2022.0910万元,主持,结题

    [15]  中国科学院广州地球化学研究所涂光炽优秀青年学者计划”A类人才项目,2020.08-2023.07100万元,主持,结题