- 姓名: 陳情澤
- 性別: 男
- 職務: 廣東省礦物物理與材料研究開發(fā)重點實驗室秘書
- 職稱: 副研究員
- 學歷: 博士研究生
- 電子郵件: chenqingze@gig.ac.cn
????現(xiàn)任中國科學院廣州地球化學研究所副研究員,廣東省礦物物理與材料研究開發(fā)重點實驗室秘書。于2012年在中國地質(zhì)大學(武漢)材料與化學學院取得學士學位,于2018年在中國科學院廣州地球化學研究所取得礦物學博士學位,2021年起任副研究員。主要從事礦物結(jié)構(gòu)及表-界面反應性、礦物(固廢)資源利用/礦物功能材料等方面研究。以第一作者/通訊作者在Environmental Science & Technology、Chemical Communications、Inorganic Chemistry、Mineralogical Magazine、Applied Clay Science等國際主流期刊上共發(fā)表SCI論文50余篇(第一/通訊作者26篇),授權(quán)國家發(fā)明專利20余項。曾獲中國科學院大學優(yōu)秀博士論文獎(2019)、中國科學院院長特別獎(2018),入選中國科學院青年創(chuàng)新促進會會員(2020)、涂光熾優(yōu)秀青年學者A類(2024)。主持中國科學院C類先導專項項目課題、廣東省基礎與應用基礎研究基金杰出青年項目、國家自然科學基金面上項目和青年科學基金項目。擔任中國礦物巖石地球化學學會非金屬礦物資源高效利用專業(yè)委員會委員、地球化學和Minerals等期刊青年編委。
簡 歷:
社會任職:
1、礦物結(jié)構(gòu)及表-界面反應性
結(jié)合現(xiàn)代表面分析技術和模擬計算手段,研究黏土礦物、鐵錳氧化物等納米礦物的結(jié)構(gòu)演化及其表-界面反應過程。
2、礦物(固廢)資源利用/礦物功能材料
基于納米礦物的納米結(jié)構(gòu)、元素載體等特點,開發(fā)礦物(固廢)資源高值利用技術,制備功能納米材料,用于環(huán)境污染修復、能源轉(zhuǎn)化儲存等領域。
研究方向:
1. 涂光熾優(yōu)秀青年學者A類(2024年)
2. 廣東省杰出青年項目(2023年)
3. 中國科學院青年創(chuàng)新促進會會員(2020年)
4. 中國科學院優(yōu)秀博士學位論文(2019年)
5. 中國科學院院長特別獎(2018年)
獲獎及榮譽:
1.H.Y. Wei, S.S. Wei,?Q.Z. Chen*, Y.X. Yang, X. Liu, S.Q. Long, J. Liu*, J.X. Zhu, R.L. Zhu. Nano-scale insights into clay minerals regulating the Fe(II)-catalyzed ferrihydrite transformation under anoxic conditions. Environmental Science & Technology, 2025, 59, 8, 3982–3991.
2. H.B. Li, S.Q Long, S.S. Wei, Q.Z. Chen*, X.J. Lin, X.L. Liang, J.X. Zhu, R.L. Zhu. Green remediation of REEs-contaminated soil by biodegradable chelators with optimization and risk assessment. Environmental Pollution, 2025, 369, 125841.
3. S.Y. He, R.L. Zhu, Q.Z. Chen*, N. Tang, S.C. Ji, H.Y. Wei, J. Du, Y.X. Yang, J.X. Zhu, Development of a novel hierarchically porous and hydrophobic silica from montmorillonite for benzene adsorption.?Separation and Purification Technology,?2024, 329 (15), 125031.
4. B. Han, J. Liu*, R.L. Zhu, Q.Z. Chen*, Clay minerals inhibit the release of Cd(II) during the phase transformation of Cd(II)-ferrihydrite coprecipitates. Journal of Hazardous Materials, 2024, 462, 132723.
5. S.Q. Long?, J.X. Xiang?, H.B. Li, S.S. Wei, Q.Z. Chen*, R.L. Zhu. Phosphorus-modified metakaolin as a soil amendment for immobilizing REEs and reducing their bioaccumulation, Applied Clay Science, 2024, 251, 107304.
6. Q.Z. Chen,?S.S. Wei, R.L. Zhu*, J. Du, J.Y. Xie, H.M. Huang, J.X. Zhu, Z.X. Guo. Mechanochemical reduction of clay minerals to porous silicon nanoflakes for high-performance lithium-ion battery anodes, Chemical Communications,?2023, 59 (96), 14297–14300.
7. M.W. Laipan*?, Q.Z. Chen*?, Z.Y. Wang, M. Zhang, M.Y. Yuan, R.L. Zhu, L.Y. Sun*. Interlayer anions of layered double hydroxides as mobile active sites to improve the adsorptive performance toward Cd2+. Inorganic Chemistry, 2023, 62 (34), 13857–13866.
8. J. Du, R.L. Zhu, Q.Z. Chen*, J.Y. Xie, H.Y. Xian, J.P. Zhang, J.X. Zhu. In situ synthesis of stable silicon carbide-reinforced silicon nanosheets from organoclay for high-performance lithium-ion battery anodes. Applied Surface Science, 2023, 617, 156566.
9. L.X. Yan, Q.Z. Chen*, Y.X. Yang, R.L. Zhu. The significant role of montmorillonite on the formation of hematite nanoparticles from ferrihydrite under heat treatment. Applied Clay Science, 2021, 202, 105962.
10. Q.Z. Chen, R.L. Zhu*, Q.Z. He, S.H. Liu, D.C. Wu*, H.Y. Fu, J. Du, J.X. Zhu, H.P. He. In situ synthesis of a silicon flake/nitrogen-doped graphene-like carbon composite from organoclay for high-performance lithium-ion battery anodes. Chemical Communications, 2019, 55, 2644–2647.
11. Q.Z Chen, R.L Zhu*, L.L Deng, L.Y. Ma, Q.Z. He, J. Du, H.Y. Fu, J.P. Zhang, A.Q. Wang. One-pot synthesis of novel hierarchically porous and hydrophobic Si/SiOx composite from natural palygorskite for benzene adsorption. Chemical Engineering Journal, 2019, 378, 122131.
12. Q.Z. Chen, R.L. Zhu*, S.H. Liu, D.C. Wu, H.Y. Fu, J.X. Zhu, H.P. He.?Self-templating synthesis of silicon nanorods from natural sepiolite for high-performance lithium-ion battery anodes.?Journal of Materials Chemistry A, 2018, 6, 6356–6362.
13. Q.Z. Chen, S.H. Liu, R.L. Zhu*, D.C. Wu, H.Y. Fu, J.X. Zhu, H.P. He. Clay minerals derived nanostructured silicon with various morphology: Controlled synthesis, structural evolution, and enhanced lithium storage properties. Journal of Power Sources, 2018, 405, 61–69.
14. Q.Z. Chen, R.L. Zhu*, H.Y. Fu, L.Y. Ma, J.X. Zhu, H.P. He, Y.J. Deng. From natural clay minerals to porous silicon nanoparticles. Microporous and Mesoporous Materials, 2018, 260, 76–83.
15. Q.Z. Chen,?R.L. Zhu*, L.Y. Ma, Q. Zhou, J.X. Zhu, H.P. He. Influence of interlayer species on the thermal characteristics of montmorillonite. Applied Clay Science, 2017, 135, 129–135.
16. Q.Z. Chen,?R.L. Zhu*, Y.P. Zhu, J. Liu, L.F. Zhu, L.Y. Ma, M. Chen. Adsorption of polyhydroxy fullerenes on polyethylenimine-modified montmorillonite. Applied Clay Science, 2016, 132–133, 412–418.
17. Q.Z. Chen, H.M. Liu, R.L. Zhu*, X. Wang, S.Y. Wang, J.X. Zhu, H.P. He. Facile synthesis of nitrogen and sulfur co-doped graphene-like carbon materials using methyl blue/montmorillonite composites.?Microporous and Mesoporous Materials, 2016, 225, 137–143.
18. Q.Z. Chen, R.L. Zhu*, W.X. Deng, Y. Xu, J.X. Zhu, Q. Tao, H.P. He. From used montmorillonite to carbon monolayer-montmorillonite nanocomposites. Applied Clay Science, 2014, 100, 112–117.
代表論著:
1. 中國科學院廣州地球化學研究所“涂光熾優(yōu)秀青年學者”計劃A類,2024.04-2027.03,項目負責人;
2. 廣東省基礎與應用基礎研究基金杰出青年項目,2023.01-2026.12,項目負責人;
3. 國家自然科學基金面上項目,黏土礦物及其鐵氧化物復合體對Mn(II)氧化與晶體生長的制約,2023.01-2026.12,項目負責人;
4. 廣東省科研事業(yè)單位重點領域研發(fā)計劃項目子課題,2020.09-2023.08,子課題負責人;
5. 中國科學院青年創(chuàng)新促進會人才項目,2020.01-2023.12,項目負責人;
國家自然科學基金青年科學基金項目,黏土礦物對水鐵礦相轉(zhuǎn)變過程的影響及其制約機制,2020.01-2022.12,項目負責人。

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