简贤 研究员 博士 四川省 研究领域: 储能,精细化工 研究方向: (1)碳基微波吸收材料:包括石墨烯胶囊为主的微波吸收材料、柔性吸波等。 (2)碳基储能材料及器件:包括氟化碳电池、锂离子电池、钠离子电池负极材料等。 所在单位: 电子科技大学

基本信息

所在单位:
电子科技大学
机构细分:
材料与能源学院
单位类型:
高等院校
职务:
研究员
职称:
研究员
最高学历:
博士
专家介绍:
简贤,研究员/博导,担任碳基电子材料与器件团队(原名:微纳功能材料与器件团队)的团队负责人。坚持在一线科研十余年,主要研究锂电池、钠电池用的碳材料CVD合成技术、微波吸收、ALD-Raman表征联合技术。采用气体诱导、等离子体诱导技术合成石墨烯胶囊、氟化碳、陶瓷胶囊等新材料,并应用在清洁能源存储、微波吸收等领域。在EES,Advanced Energy Materials, Nano-Micro letters,ACS Nano, Chemical Engineering Journal, Carbon,ACS applied materials & interface等学术期刊上发表80篇SCI论文,授权国家发明专利16项,其中6篇入选ESI高引论文。承担国家自然科学基金(青年、面上)、四川省科技计划等课题,累计经费2700万元。获得西南交大优秀博士论文(2015年),电子科大学术新人奖(2017年),四川省科学技术进步奖一等奖(2019年)。

科研能力

研究领域:
储能,精细化工
研究方向:
(1)碳基微波吸收材料:包括石墨烯胶囊为主的微波吸收材料、柔性吸波等。
(2)碳基储能材料及器件:包括氟化碳电池、锂离子电池、钠离子电池负极材料等。
论文著作:
(1) Jinyao Li , Wei Tian , Yifan Liu , Baoshan Wu , Xian Jian *, Longjiang Deng.Achieving enhanced microwave absorption performance based on metal/covalent organic frameworks-derived heterostructures, Composites Part B.(2022) (一区,IF=11.322)
(2) Wei Jiao ,Lili Zhang ,Ruiquan Yang ,Jing Ning ,Lei Xiao ,Yifan Liu ,Jianyi Ma ,Nasir Mahmood ,Xian Jian* Synthesis of monolayer carbon-coated TiO2 as visible-light-responsive photocatalysts, Applied Materials Today. (2022)(一区IF=8.663)
(3) Yang X , Wu L , Hou J , et al. Symmetrical growth of carbon nanotube arrays on FeSiAl micro-flake for enhancement of lithium-ion battery capacity[J]. Carbon: An International Journal Sponsored by the American Carbon Society,(2022)(189-):189.(一区,IF=11.307)
(4) WeiTian ,JinyaoLi ,YifanLiu ,LongjiangDeng ,YangGuo ,XianJian. Large-scale synthesis of fluorine-free carbonyl iron-organic silicon hydrophobic absorbers with long term corrosion protection property,NanoResearch.(2022)(一区,IF=10.269)
(5) Hongyan Zhang ,Feng Cao ,Hui Xu ,Wei Tian ,Ying Pan ,Nasir Mahmood , Xian Jian. Plasma-enhanced interfacial engineering of FeSiAl[at]PUA[at]SiO2 hybrid for efficient microwave absorption and anti-corrosion,NanoResearch.(2022)(一区,IF=10.269)
(6) Yifan Liu , Hongyan Zhang , Baoshan Wu,Jianyi Ma,Guoyun Zhou,Nasir Mahmood , Xian Jian *, Huakun Liu. Pushing capacities and energy densities beyond theoretical limits of lithium primary batteries using active CFx nanocapsules with x > 1,Inorganic Chemistry Frontiers.(2022)(一区,IF=7.779)
(7) Wei Tian , Jinyao Li , Yifan Liu , Rashad Ali, Yang Guo, Longjiang Deng *, Nasir Mahmood * , Xian Jian*. Atomic Scale Layer by Layer Deposition of FeSiAl[at]ZnO[at]Al2O3 Hybrid with Threshold Anti Corrosion and Ultra High Microwave Absorption Properties in Low Frequency Bands, Nano-Micro Lett. (2021) 13:161 (一区,IF=16.419)
(8) Wei Tian, Xingzhong Zhang, Yang Guo, Chunhong Mu* , Peiheng Zhou, Liangjun Yin, Linbo Zhang, Li Zhang, Haipeng Lu, Xian Jian*, Longjiang Deng*. Hybrid silica-carbon bilayers anchoring on FeSiAl surface with bifunctions of enhanced anti-corrosion and microwave absorption, Carbon 173 (2021) 185-193. (ESI高引)
(9) Jianan Fu, Rashad Ali, Chunhong Mu* , Yifan Liu, Nasir Mahmood, Woon-Ming Lau, Xian Jian*. Large-scale preparation of 2D VSe2through a defect-engineering approach for efficient hydrogen evolution reaction.Chemical Engineering Journal 411 (2021) 128494.(一区,IF=13.273)
(10)Jun Ma, Yifan Liu * , Yi Peng, Xinxia Yang, Jia Hou , Chao Liu, Zhiwen Fang, Xian Jian*. UV-radiation inducing strategy to tune fluorinated carbon bonds delivering the high-rate Li/CFx primary batteries, Composites Part B 230 (2022) 109494. (一区,IF=9.078)
(11)Ying Pan, Jinyao Li, Ziyi Liu, Ruiquan Yang, Yifan Liu* , Liangjun Yin, Huakun Liu, Xian Jian*. Inorganic/organic bilayer of silica/acrylic polyurethane decorating FeSiAl for enhanced anti-corrosive microwave absorption, Applied Surface Science 567 (2021) 150829. (一区,IF=9.078)
(12)Yang Guo, Xian Jian*, et al. Plasma-induced FeSiAl[at]Al2O3[at]SiO2 core–shell structure for exceptional microwave absorption and anti-oxidation at high temperature, Chemical Engineering Journal 384 (2020) 123371. (IF=13.273, ESI高引)
(13)Rashad Ali, Aixian Shan, Govidarajan Saranya, Xian Jian*, et al. Bifunctional water-electrolysis-catalysts meeting band-diagram analysis: case study of “FeP” electrodes, Journal of Materials Chemistry A, 2020,8, 20021-20029. (IF=12.732)
(14)Chen D J,Zhou Z Q, Feng C, Lv W Q, Wei Z H, Kelvin H. L. Zhang, Lin B, Wu S H, Lei T Y, Guo X Y, Zhu G L, Jian Xian(*),Xiong J(*),Traversa E, Dou S X, He W D(*) , An Upgraded Lithium Ion Battery Based on a Polymeric Separator Incorporated with Anode Active Materials , Advanced Energy Materials, 2019,11(1), pp 1803627 (IF=21.88)
(15)Jian Xian*,Tian W, Li J, Deng L, Zhou Z, Zhang L, Lu H, Yin L, Mahmood N, High-temperature Oxidation Resistant ZrN0. 4B0. 6-SiC Nanohybrid for Enhanced Microwave Absorption , ACS Applied Materials & Interfaces, 2019,11 (17), pp 15869–15880 (IF=8.09,ESI高引)
(16)Yang Guo, Xian Jian*, Li Zhang, Chunhong Mu, Liangjun Yin, Jianliang Xie, Nasir Mahmood, Shixue Dou, Renchao Che*, Longjiang Deng*, Plasma-induced FeSiAl[at]Al2O3[at]SiO2 core–shell structure for exceptional microwave absorption and anti-oxidation at high temperature. Chemical Engineering Journal, 2020, 384, pp123371. (IF= 13.273, ESI高引)
(17)Jian Xian*, Wang H, Rao G, Jiang L, Wang H, Subramaniyam C M, Mahmood A, Zhang W, Xiang Y, Dou S X, Zhou Z, Hui D, Kalantar Zadeh K, Mahmood N , Self-tunable ultrathin carbon nanocups as the electrode material of sodium-ion batteries with unprecedented capacity and stability , Chemical Engineering Journal, 2019,364, pp 578-588 (IF=13.273)
(18)Hong Wang, Song Nie, Han Li, Rashad Ali, Jianan Fu, Huajing Xiong, Jing Li, Zuquan Wu,Woon-Ming Lau, Nasir Mahmood, Ruonan Jia,* Yifan Liu, Xian Jian*, 3D Hollow Quasi-Graphite Capsules/Polyaniline Hybrid with a High Performance for Room-Temperature Ammonia Gas Sensors. ACS sensors, 2019, 4, pp2343. (IF=6.944)
(19)Jian Xian*, Xiao X, Deng L, Tian W, Wang X, Mahmood N, Dou S , Heterostructured Nanorings of Fe-Fe3O4[at]C Hybrid with Enhanced Microwave Absorption Performance , ACS Applied Materials & Interfaces, 2018,10(11), pp 9369-9378 (IF=8.09,ESI高引)
(20)Yang Guo, Xingzhong Zhang, Xiaoqiang Feng, Xian Jian*, Li Zhang, Longjiang Deng. Non-isothermal oxidation kinetics of FeSiAl alloy powder for microwave absorption at high temperature. Composites Part B,2018, 155:282-287(IF=9.078)
(21)Rao G(#), Jian X(*), Lv W, Zhu G, Xiong J(*), He W(*) , A highly-efficient route to three-dimensional nanoporous copper leaves with high surface enhanced Raman scattering properties , Chemical Engineering Journal, 2017,321, pp 394-400 (IF=13.273)
(22)Wu, Songhao(#), Lv, Weiqiang, Lei, Tianyu, Han, Yidong, Jian, Xian, Deng, Min, Zhu, Gaolong, Liu, Mingzhen, Xiong, Jie(*), Dickerson, James H., He, Weidong(*) , Distinctive Supercapacitive Properties of Copper and Copper Oxide Nanocrystals Sharing a Similar Colloidal Synthetic Route , Advanced Energy Materials, 2017, 7(14) 1700105 (IF=21.88)
(23)Jian, Xian(#), Chen, Guozhang, Liu, Hongyang, Mahmood, Nasir, Zhu, Shibu, Yin, Liangjun, Tang, Hui, Lv, Weiqiang, He, Weidong(*), Zhang, Kelvin H. L., Zeng, Qun(*), Li, Baihai, Li, Xuesong, Zhang, Wanli(*), Wang, Xiaolin(*) , Vapor-Dissociation-Solid Growth of Three-Dimensional Graphite like Capsules with Delicate Morphology and Atomic-level Thickness Control , Crystal Growth & Design, 2016,16(9), pp 5040-5048 (IF=4.15)
(24)Jian, Xian(#)(*), Wu, Biao, Wei, Yufeng, Dou, Shi Xue, Wang, Xiaolin, He, Weidong, Mahmood, Nasir , Facile Synthesis of Fe3O4/GCs Composites and Their Enhanced Microwave Absorption Properties. ACS Applied Materials & Interfaces, 2016, 8(9), pp 6101-6109 (IF=8.09,ESI高引)
(25)Jian, Xian(#), Jiang, Man, Zhou, Zuowan(*), Zeng, Qun, Lu, Jun, Wang, Dingchuan, Zhu, Junting, Gou, Jihua, Wang, Yong, Hui, David, Yang, Mingli , Gas-Induced Formation of Cu Nanoparticle as Catalyst for High-Purity Straight and Helical Carbon Nanofibers , ACS Nano, 2012,6(10), pp 8611-8619 (IF=13.71)
(26)Jian, Xian(#), Jiang, Man, Zhou, Zuowan(*), Yang, Mingli, Lu, Jun, Hu, Shuchun, Wang, Yong, Hui, David , Preparation of high purity helical carbon nanofibers by the catalytic decomposition of acetylene and their growth mechanism , Carbon, 2010, 48(15), pp 4535-4541 (IF=7.08)
发明专利:
1.简贤,彭艺,马俊,刘一凡,慕春红,一种等离子体诱导活化氟化碳的方法及锂一次电池制备,发明专利,CN202011030019.2(授权)
2.简贤,张兴中,李元勋,苏桦,化学气相沉积碳修饰片状FeSiAl合金的制备方法,发明专利,CN202010076426.0(授权)
3.简贤,王红,聂松,李涵,聚苯胺/石墨烯胶囊三维空心杂化结构及制备方法和应用,发明专利,CN201910684791.7(授权)
4.简贤,王红,饶高峰,付健桉,向勇,一种氟化石墨烯胶囊的制备方法及在锂一次电池中的应用,发明专利,CN201810920889.3(授权)
5.简贤,吴龙伟,张兴中,李元勋,苏桦,舒剑.一种片状Fe基合金催化生长碳纳米管阵列的制备方法,CN112875680A,2021-06-01.
6.简贤,马俊,刘一凡.一种紫外辐射改性氟化碳的方法及在锂一次电池中的应用,CN112875679A,2021-06-01.
7.简贤,吴龙伟,李元勋,苏桦,舒剑.锂离子电池正极导电添加剂碳纳米管阵列的制备方法,CN113072061A,2021-07-06.
8.简贤,李泽骁,付健桉.氟化螺旋碳纳米管的制备方法及在锂一次电池中的应用,CN113233443A,2021-08-10.
9.简贤,潘莹,田威,张兴中,刘一凡.一种FeSiAl基有机-无机双层核壳结构的制备方法,CN113402920A,2021-09-17.
10.一种三明治结构MnO2[at]GCs[at]MnO2复合材料的制备方法。ZL201610071345.5
11.氧化铜纳米材料的制备方法。ZL201410257872.6
12.一种Cu2-xS热电材料的制备方法。ZL201510190458.2

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