首页 > 教职员工 > 全职教师 > 研究序列>

谢寒寒 研究助理教授 (副研究员) 硕士生导师

研究方向:二维纳米材料、生物医用材料、肿瘤靶向癌症治疗

邮箱:xiehh@sustech.edu.cn

个人主页

谢寒寒,南方科技大学机械与能源工程系研究助理教授,硕士研究生导师,深圳市高层次人才。2018年获武汉大学光学专业博士学位。2018年至2021年在深圳市人民医院从事博士后研究工作,同时以客座博士后的身份在中国科学院深圳先进技术研究院从事相关研究工作,2021年4月加入南方科技大学机械与能源工程系任研究助理教授,主要研究方向为二维纳米材料及其在生物医学领域中的应用。近年来发表SCI论文20余篇,h-index=16,他引2700余次,其中以第一作者身份(包括共同一作)在Angewandte Chemie International Edition,Small,Biomaterials,ACS Applied Materials & Interfaces等国际权威期刊发表SCI论文9篇。其中3篇论文被选为“封面故事”。申请中国发明专利8项,已授权4项,主持和参与国家自然科学基金、中国博士后科学基金等在内的科研项目4项。

教育经历:

2013.09-2018.06       武汉大学                                        博士

2014.10-2018.06       中国科学院深圳先进技术研究院     客座学生
2009.09-2013.06       安庆师范大学                                 学士

工作经历:

2021.04.08-至今         南方科技大学                                研究助理教授

2018.07-2021.03        深圳市人民医院                             博士后
2018.07-2021.03        中国科学院深圳先进技术研究院     客座博士后
 
个人荣誉:

(1)深圳市高层次人才(后备级),2021.06
(2)中国科学院深圳先进技术研究院院长特别奖,2015.09    

主持和参与科研项目:
[1] 中国博士后科学基金,黑磷基光响应形状记忆复合材料的构建与医学应用探索,2018-2021,项目负责人
[2] 国家自然科学基金面上项目,基于寡(聚)糖标记的循环肿瘤细胞无损检测研究,2021-2024,主要参与者
[3] 国家自然科学基金青年基金项目,基于二维材料光热效应的多功能组织工程支架, 2017-2019,主要参与者
[4] 国家自然科学基金青年基金项目,磁性温敏微凝胶载药体系的构建及其在膀胱癌热灌注化疗中的应用研究,2016-2018,主要参与者

发明专利:
[1] 谢寒寒,高明,喻学锋,一种显影剂及其制备方法和一种指纹显现方法,中国发明专利,授权公开号:CN107629784B
[2] 喻学锋,谢寒寒,童睿锋,一种光热成像指纹检测方法,中国发明专利,授权公开号:CN107595292B
[3] 喻学锋,韩卫家,谢寒寒,孙正博,一种小尺寸黑磷片及其制备方法,中国发明专利,授权公开号:CN105600760B
[4] 喻学锋,邵俊东,谢寒寒,王怀雨,一种聚合物包裹的黑磷及其制备方法与应用,中国发明专利,授权公开号:CN106267201B
[5] 喻学锋,谢寒寒,黄浩,一种黑磷量子点及其制备方法,中国发明专利,申请号:CN201610505320.1
[6] 喻学锋,谢寒寒,溶剂热液相合成水溶性六方相氟化钇钠微米晶的方法及水溶性氟化钇钠微米晶,中国发明专利,申请号:CN201510236238.9
[7] 陈月,谢寒寒,一种复合纳米材料及其制备方法和应用,中国发明专利,申请号:CN201910743129.4
[8] 陈月,谢寒寒,一种表面增强拉曼散射基底及其制备方法和应用,中国发明专利,申请号:CN201910738400.5

代表性论文:
[1] HH Xie, MQ Liu, BH You, GH Luo, Y Chen, BL Liu, ZY Jiang, PK Chu, JD Shao, and XF Yu. Biodegradable Bi2O2Se Quantum Dots for Photoacoustic Imaging-Guided Cancer Photothermal Therapy. Small, 2020, 16, 1905208.
[2] HH Xie, PH Li, JD Shao, H Huang, Y Chen, ZY Jiang, PK Chu, XF Yu. Electrostatic Self-Assembly of Ti3C2Tx MXene and Gold Nanorods as an Efficient Surface-Enhanced Raman Scattering Platform for Reliable and High-Sensitivity Determination of Organic Pollutants. ACS Sensors, 2019, 4: 2303-2310.
[3] HH Xie#, JD Shao#, YF Ma#, JH Wang, H Huang, N Yang, HY Wang, CS Ruan, YF Luo, QQ Wang, PK Chu, XF Yu. Biodegradable near-infrared-photoresponsive shape memory implants based on black phosphorus nanofillers. Biomaterials, 2018, 164: 11-21.
[4] JD Shao#, HH Xie#, HY Wang, WH Zhou, Q Luo, XF Yu, PK Chu. 2D Material-Based Nanofibrous Membrane for Photothermal Cancer Therapy. ACS Applied Materials & Interfaces, 2018, 10: 1155-1163.
[5] HH Xie, JD Shao, JH Wang, ZB Sun, XF Yu, QQ Wang. Near-infrared optical performances of two Bi2Se3 nanosheets. RSC Advances, 2017, 7: 50234-50238.
[6] HH Xie, ZB Li, ZB Sun, JD Shao, XF Yu, ZN Guo, JH Wang, QL Xiao, HY Wang, QQ Wang, H Zhang, PK Chu. Metabolizable ultrathin Bi2Se3 nanosheets in imaging-guided photothermal therapy. Small, 2016, 12: 4136-4145.
[7] ZB Sun#, HH Xie#, SY Tang, XF Yu, ZN Guo, JD Shao, H Zhang, H Huang, HY Wang, PK Chu. Ultrasmall Black Phosphorus Quantum Dots: Synthesis and Use as Photothermal Agents. Angewandte Chemie International Edition, 2015, 54: 11526-11530.
[8] HH Xie, Q Wen, H Huang, TY Sun, PH Li, Y Li, XF Yu, QQ Wang. Synthesis of bright upconversion submicrocrystals for high-contrast imaging of latent-fingerprints with cyanoacrylate fuming. RSC Advances, 2015, 5: 79525-79531.
[9] HH Xie, M Wu, H Huang, F Qi, L Gu, HY Zhu, XF Yu, QY Gong. Facile Synthesis of Multifunctional Nanocomposites with Magnetic/Upconversion Fluorescence and Singlet Oxygen Generating Capacity. Nanoscience and Nanotechnology Letters, 2015, 7: 375-380.
[10] JD Shao, CS Ruan, HH Xie, PK. Chu, XF Yu. Photochemical Activity of Black Phosphorus for Near‐Infrared Light Controlled In Situ Biomineralization. Advanced Science, 2020, 7, 2000439.
[11] YH Kang, HH Xie, DN Liu, M. Gao, PK Chu, S Ramakrishna, XF Yu. Facile mass production of self-supported two-dimensional transition metal oxides for catalytic applications. Chemical Communications, 2019, 55: 11406-11409.
[12] JD Shao, CS Ruan, HH Xie, ZB Li, HY Wang, PK Chu, XF Yu. Black-Phosphorus-Incorporated Hydrogel as a Sprayable and Biodegradable Photothermal Platform for Postsurgical Treatment of Cancer. Advanced Science, 2018, 5:1700848.
[13] XZ Wang, JD Shao, MAE Raouf, HH Xie, H Huang, HY Wang, PK Chu, XF Yu, Y Yang, ABM AbdEl-Aal, NHM Mekkawy, RJ Miron, YF Zhang. Near-infrared light-triggered drug delivery system based on black phosphorus for in vivo bone regeneration. Biomaterials, 2018,179: 164.
[14] ZH Song, YZ Chang, HH Xie, XF Yu, PK Chu, TF Chen. Decorated ultrathin bismuth selenide nanosheets as targeted theranostic agents for in vivo imaging guided cancer radiation therapy. NPG Asia Materials, 2017, 9: e439.
[15] ZB Li, JD Shao, Q Luo, XF Yu, HH Xie, HD Fu, SY Tang, HY Wang, GL Han, PK Chu. Cell-Borne 2D Nanomaterials for Efficient Cancer Targeting and Photothermal Therapy. Biomaterials, 2017, 133: 37-48.
[16] HD Fu, ZB Li, HH Xie, ZB Sun, BK Wang, H Huang, GL Han, HY Wang, PK Chu, XF Yu. Different-sized black phosphorus nanosheets with good cytocompatibility and high photothermal performance. RSC Advances, 2017, 7: 14618.
[17] XH Li, RK Liu, HH Xie, Y Zhang, B Lyu, P Wang, JH Wang, Q Fan, Y Ma, SH Tao, S Xiao, XF Yu, YL Gao, J He. Tri-phase all-optical switching and broadband nonlinear optical response in Bi2Se3 nanosheets. Optics Express, 2017, 25: 18346-18354.
[18] YH Xu, HH Xie, GB Jiang, LL Miao, K Wang, SY Tang, XF Yu, H Zhang, QL Bao. Bilayer Bismuth Selenide nanoplatelets based saturable absorber for ultra-short pulse generation. Optics Communications, 2017, 395:55-60.
[19] JD Shao, HH Xie, H Huang, ZB Li, ZB Sun, YH Xu, QL Xiao, XF Yu, YT Zhao, H Zhang, HY Wang, PK Chu. Biodegradable black phosphorus-based nanospheres for in vivo photothermal cancer therapy. Nature Communications, 2016, 7: 12967.
[20] Y Yang, J Gao, Z Zhang, S Xiao, HH Xie, ZB Sun, JH Wang, CH Zhou, YW Wang, XY Guo, PK Chu, XF Yu. Black Phosphorus Based Photocathodes in Wideband Bifacial Dye-Sensitized Solar Cells. Advanced Materials, 2016, 28: 8937-8944.
[21] YT Zhao, HY Wang, H Huang, QL Xiao, YH Xu, ZN Guo, HH Xie, JD Shao, ZB Sun, WJ Han, XF Yu, PH Li, PK Chu. Surface Coordination of Black Phosphorus for Excellent Air and Water Stability, Angewandte Chemie International Edition, 2016, 128: 5087-5091.
[22] SY Tang, ZN Guo, JD Shao, XF Yu, HH Xie, Y Li, PH Li, L Zhang, RKY Fu, HY Wang, PK Chu. Drawing-fabrication of multifarious nanoplasmonic platform on PLLA paper for optimized SERS performance. Journal of Raman Spectroscopy, 2016, 14: 687-691.
[23] ZN Guo, H Zhang, SB Lu, ZT Wang, SY Tang, JD Shao, ZB Sun, HH Xie, HY Wang, XF Yu, PK Chu. From Black Phosphorus to Phosphorene: Basic Solvent Exfoliation, Evolution of Raman Scattering, and Applications to Ultrafast Photonics. Advanced Functional Materials, 2015, 25: 6996-7002.
[24] H Huang, JH Wang, WH Jin, PH Li, M Chen, HH Xie, XF Yu, HY Wang, ZG Dai, XH Xiao, PK Chu. Competitive Reaction Pathway for Site-Selective Conjugation of Raman Dyes to Hotspots on Gold Nanorods for Greatly Enhanced SERS Performance. Small, 2014, 10: 4012-4019.