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分類:導師信息 來源:河北大學化學與環(huán)境科學學院 2022-07-18 相關院校:河北大學
張海磊,博士,坤輿青年學者,河北大學化學與環(huán)境科學學院副教授,碩士生導師。近年來,主持國家自然科學基金、國家留學基金公派訪問學者項目、中央引導地方科技發(fā)展資金項目、河北省自然科學基金、河北省高等學?茖W技術研究項目、河北省研究生示范課程立項建設項目等多項課題,以通訊/第一作者發(fā)表SCI檢索論文26篇,其中ESI高被引論文1篇,IF>10四篇,中科院一區(qū)論文5篇;入選河北省新時代“冀青之星”、河北省科技特派員,擔任意大利帕勒莫大學、卡塔尼亞大學等博士學位論文評審人;擔任Chem. Commun., ACS Appl. Mater. Interfaces, J. Phys. Chem. C, Langmuir, Polym. Chem., Appl. Clay Sci.等30余個SCI期刊審稿人,Gels期刊客座編輯。
一、聯(lián)系方式
郵箱:zhanghailei@hbu.edu.cn
二、主講課程
《高分子物理》《高分子材料專業(yè)英語》《醫(yī)藥用高分子材料》
三、研究興趣
1、刺激響應高分子基復合材料
2、埃洛石納米管的表面改性及應用
四、榮譽及獎項
1、河北大學青年教師課堂教學比賽一等獎
2、保定市科技進步獎一等獎(第一完成人)
3、首屆河北省“冀青之星”
4、首屆河北大學青年五四獎章
5、河北大學優(yōu)秀共產黨員
6、“學習強國”優(yōu)秀學習積極分子
7、河北大學暑期社會實踐優(yōu)秀指導教師
8、首屆河北省大學生化學實驗創(chuàng)新設計競賽優(yōu)秀指導教師獎
五、基金項目
1. 基于X射線激發(fā)長余輝發(fā)光材料構建余輝光誘導水凝膠制備體系,No.22102045,國家自然科學基金,2022.01-2024.12,主持。
2. 基于π-π相互作用構建具有高電導率的納米組裝體,No. 202108130104,國家留學基金委,2022.03-2023.02,主持。
3. 基于X射線長余輝發(fā)光材料構建體內原位3D打印系統(tǒng),No. 226Z1301G,中央引導地方科技發(fā)展資金項目,2022.07~2025.06,主持。
4. 基于埃洛石制備過氧化氫刺激響應型納米膠囊,B2019201138,河北省自然科學基金,2019.01~2021.12,主持,已結題。
5. 聚合物制備中的綜合設計,KCJSX2019009,河北省研究生示范課程立項建設項目,2020.01~2021.12,主持,已結題。
6. 過氧化氫響應型埃洛石納米管基載藥熒光水凝膠的制備,QN2018052,河北省高等學校科學技術研究項目,2018.01~2020.12,主持,已結題。
7. 埃洛石納米管內外壁選擇性改性用于提高細胞攝取率的研究,CXZZSS2019003,河北省研究生創(chuàng)新資助項目,2019.04-2020.12,指導教師。
8. 基于埃洛石納米管精準修飾構筑高性能酚醛樹脂基燒蝕型熱防護材料,B2020201072,河北省自然科學基金重點項目,2020.01-2023.12,第二參與人。
9. 自縮合乙烯基開環(huán)聚合法制備超支化聚糖,S2016001,河北省研究生創(chuàng)新資助項目,2016.01-2016.12,主持,已結題。
10. 過氧化氫響應型埃洛石納米管基載藥熒光水凝膠的制備,河北大學科研成果轉化教學項目,2018.12-2020.9,主持,已結題。
六、代表性論文(第一/通訊作者)
2022
[1] Bo Zhang, Shanshan Li, Yuan Wangm Yonggang Wu, Hailei Zhang*. Halloysite nanotube-based self-healing fluorescence hydrogels in fabricating 3D cube containing UV-sensitive QR code information. Journal of Colloid and Interface Science, 2022, 617, 353-362 (一區(qū),IF=9.965).
[2] Haiyun Fan, Pengying Jia, Hailei Zhang*, Zhiyi Su, Xinwu Ba, Yonggang Wu*. Pyrene-functionalized halloysite nanotubes for simultaneously detecting and separating Hg(ii) in aqueous media: A comprehensive comparison on interparticle and intraparticle excimers. Nanotechnology Reviews, 2022, 11(1): 2038-2049 (二區(qū),IF=6.739)
[3] Weihua Song, Jipeng You, Yuangong Zhang, Qi Yang, Jin Jiao, Hailei Zhang*. Recent Studies on Hydrogels Based on H2O2-Responsive Moieties: Mechanism, Preparation and Application. Gels, 2022, 8(6): 361 (invited, 二區(qū),IF=4.432).
2021
[4] Qiang Zhao, Hanxi Jiang, Boyan Tang, Yonggang Wu, Xinwu Ba, Hailei Zhang*. Chemosensor-Anchored Halloysite Nanotubes for Detection and Removal of Hypochlorite in Water. ACS Applied Nano Materials 2021, 4, 7, 7435–7442 (二區(qū),IF=6.140).
[5] Boyan Tang, Hailei Zhang*, Cong Cheng, Hanxi Jiang, Libin Bai, Xinwu Ba, Yonggang Wu*. Development of halloysite nanotube-based hydrogel with colorimetric H2O2-responsive character. Applied Clay Science 2021, 212: 106230 (二區(qū)TOP,IF=5.907).
[6] Yan Gao, Haisong Zhang*, Yanbo Zuo, Weihua Song, Libin Bai, Hailei Zhang*, Hongjie Wang, Yonggang Wu, Xinwu Ba*. Preparation of allylamine-grafted cellulose by Ce(IV): a desirable candidate of oral phosphate binders. Polymer Bulletin, 2021, 78: 2537-2552.
2020
[7] Zhiyi Su, Hailei Zhang*, Yan Gao, Li Huo, Yonggang Wu, Xinwu Ba*. Coumarin-anchored halloysite nanotubes for highly selective detection and removal of Zn(II). Chemical Engineering Journal, 2020, 393: 124695 (一區(qū),IF=16.744).
[8] Cong Cheng, Yan Gao*, Weihua Song, Qiang Zhao, Haisong Zhang, Hailei Zhang*. Halloysite Nanotube-Based H2O2-Responsive Drug Delivery System with a Turn on Effect on Fluorescence for Real-Time Monitoring. Chemical Engineering Journal, 2020, 380: 122474 (一區(qū),IF=16.744).
[9] Cong Cheng, Weihua Song*, Qiang Zhao, Hailei Zhang*. Halloysite Nanotubes in Polymer Science: Purification, Characterization, Modification and Applications. Nanotechnology Reviews, 2020, 9: 323–344 (Invited Paper, 二區(qū),IF=6.739).
[10] Yanfang Ma, Zhihang Zhao, Boyan Tang, Yonggang Wu, Hailei Zhang*. Facile preparation of polymer-grafted halloysite nanotubes via a redox system: a novel approach to construct antibacterial hydrogel. Macromolecular Research, 2020, 28(10): 948-952.
[11] Feng Liu, Yuangong Zhang*, Xiaohui Hao, Qian Zhou, Ying Zheng, Libin Bai, Hailei Zhang*. Facile One-Pot Synthesis of Hyperbranched Glycopolymers in Aqueous Solution via a Hydroxy/Cu(III) Redox Process. Polymers, 2020, 12(9): 2065.
2019
[12] Yuangong Zhang; Libin Bai*, Cong Cheng; Qian Zhou; Zhou Zhang; Yonggang Wu, Hailei Zhang*. A Novel Surface Modification Method upon Halloysite Nanotubes: A Desirable Cross-Linking Agent to Construct Hydrogels. Applied Clay Science, 2019, 182(1): 105259 (二區(qū)TOP,IF=5.907).
[13] Hailei Zhang, Cong Cheng, Hongzan Song, Libin Bai, Yongqiang Cheng*, Xinwu Ba*, Yonggang Wu*. A Facile One-Step Grafting of Polyphosphonium onto Halloysite Nanotubes Initiated by Ce(IV). Chemical Communications, 2019, 55: 1040-1043 (二區(qū)TOP,IF=6.222);
[14] Xiaojie Ren, Hailei Zhang*, Meining Song, Cong Cheng, Hongchi Zhao*, Yonggang Wu*. One-Step Route to Ladder-Type C-N Linked Conjugated Polymers. Macromolecular Chemistry and Physics, 2019, 9: 1900044.
2018
[15] Feng Liu, Yonggang Wu,* Libin Bai, Xixi Peng, Hailei Zhang,* Yuangong Zhang, Puying An, Sujuan Wang, Gang Ma, Xinwu Ba*. Facile Preparation of Hyperbranched Glycopolymer via AB3* Inimer Promoted by a Hydroxy/Cerium (IV) Redox Process. Polymer Chemistry, 2018, 9: 5024-5031(二區(qū)TOP,IF=5.582);
[16] Chaoying Hu, Weiping Chen, Haicui Yao, Xiaojie Ren, Hailei Zhang*, Hongchi Zhao*, Yonggang Wu*, Xinwu Ba. Facile Synthesis of Ladder-Type Polyacenes with Perylene-Fused-Pyrene Structures. Macromolecular Chemistry and Physics, 2018, 219: 1800201.
[17] Xuejing Liu, Yuangong Zhang, Haijing Hao, Wanju Zhang, Libin Bai,* Yonggang Wu, Hongchi Zhao, Hailei Zhang,* Xinwu Ba. Facile Construction of a Hyperbranched Poly(acrylamide) Bearing Tetraphenylethene Units: A Novel Fluorescence Probe with a Highly Selective and Sensitive Response to Zn2+, RSC Advances, 2018, 8: 5776-5783.
[18] Feng Liu, Hailei Zhang,* Jingwei Dong, Yonggang Wu,* Weiwei Li.* Highly Efficient Synthesis of Ladder-Type Small Molecular and Polymer based on BN-Heteroacene. Asian Journal of Organic Chemistry, 2018, 7: 465-470;
[19] Xinying Qin, Chao Wang, Meining Song, Hailei Zhang*, Yonggang Wu*. Facile Grafting of Ionic Liquids onto Halloysite Nanotubes via An Atom Transfer Radical Polymerization Method. Journal of Polymer Materials, 2018, 35: 159-169.
2017
[20] Feng Liu, Libin Bai, Hailei Zhang,* Hongzan Song, Liandong Hu, Yonggang Wu,* Xinwu Ba. Smart H2O2‑Responsive Drug Delivery System Made by Halloysite Nanotubes and Carbohydrate Polymers. ACS Applied Materials & Interfaces, 2017, 9: 31626-31633 (一區(qū),IF=10.383);
[21] Jingwei Dong, Zhihang Zhao, Rui Liu, Hailei Zhang,* Yonggang Wu, Xinwu Ba*. Investigation of a Halloysite-Based Fluorescence Probe with a Highly Selective and Sensitive “Turn-On” Response upon Hydrogen Peroxide. RSC Advances, 2017, 7: 55034-55043.
[22] Hailei Zhang*. Selective Modification of Inner Surface of Halloysite Nanotubes: A Review. Nanotechnology Reviews, 2017, 6: 573-581 (二區(qū)TOP,IF=6.222).
Before 2017
[23] Hailei Zhang, Tianfei Ren, Yunjing Ji, Lingui Han, Yonggang Wu*, Hongzan Song*, Libin Bai, Xinwu Ba. Selective Modification of Halloysite Nanotubes with 1-Pyrenylboronic Acid: A Novel Fluorescence Probe with Highly Selective and Sensitive Response to Hyperoxide. ACS Applied Materials & Interfaces, 2015, 7: 23805–23811 (一區(qū),IF=10.383);
[24] Hailei Zhang, Xiaoyan Zhu, Yonggang Wu*, Hongzan Song*, Xinwu Ba. High-efficiency grafting of halloysite nanotubes by using p-conjugated polyfluorenes via ‘‘click’’ chemistry. Journal of Materials Science, 2015, 50:4387–4395;
[25] Hailei Zhang, Shuli Ma, Dongqin Li, Yonggang Wu, Xinwu Ba*. Synthesis and Characterization of Alternating Polymers Incorporating Boron-Chelated Heterochrysene Units, Polymers, 2015, 7, 1192-1204;
[26] Hailei Zhang, Xiaozhong Hong, Xinwu Ba*, Bei Yu, Xin Wen, Sujuan Wang, Xuefei Wang, Lei Liu, Jinchong Xiao*. Synthesis, Physical Properties, and Photocurrent Behavior of Strongly Emissive Boron-Chelate Heterochrysene Derivatives, Asian Journal of Organic Chemistry, 2014, 3: 1121–1216;
七、參加學術會議
1. Hailei Zhang*, Yonggang Wu, Xinwu Ba. Surface chemical modification of halloysite nanotubes. ACS Spring 2021 Meeting, Oral presentation (invited by Prof. Y. Lvov).
2. 張海磊*,武永剛,巴信武. 埃洛石納米管基高分子復合材料在生物領域的應用. 2019年生物醫(yī)用高分子材料學術大會暨海峽兩岸學術會交流會, 口頭報告.
3. Hailei Zhang*, Yonggang Wu, Xinwu Ba. Facile construction of polymer-grafted holloysite nanotubes by using a redox initiating system. ISNSC-11 & WFIM-3, Oral presentation.
4. Hailei Zhang*, Hongzan Song. Facile grafting of ionic liquids onto halloysite nanotubes via an atom transfer radical polymerization method. 255th National Meeting and Exposition of the American-Chemical-Society, Oral presentation.
5. 張海磊*,田月蘭,張元功. 過氧化性響應型埃洛石納米管基熒光探針及釋藥體系的研究, 中國化學會第31屆學術年會, 優(yōu)秀墻報獎.
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