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中科院北京納米能源所智能紡織課題組招生/招聘啟事
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中國(guó)科學(xué)院北京納米能源與系統(tǒng)研究所智能紡織實(shí)驗(yàn)室招收化學(xué)、材料、電子、信息、生物、醫(yī)學(xué)、紡織等不同專業(yè)背景的碩士/博士研究生、科研助理、聯(lián)合培養(yǎng)學(xué)生,并面向海內(nèi)外招聘相關(guān)背景的博士后、助理/副研究員等。 一、 課題組組長(zhǎng)、實(shí)驗(yàn)室負(fù)責(zé)人(PI)簡(jiǎn)介 董凱,中國(guó)科學(xué)院北京納米能源與系統(tǒng)研究所、中國(guó)科學(xué)院大學(xué)青年研究員,博士生導(dǎo)師,智能紡織課題組組長(zhǎng)、實(shí)驗(yàn)室負(fù)責(zé)人。東華大學(xué)博士,美國(guó)佐治亞理工學(xué)院訪問學(xué)者,中科院北京納米能源與系統(tǒng)研究所歷任副研究員、青年研究員。主要研究方向?yàn)榛谀Σ岭娦?yīng)新型機(jī)電轉(zhuǎn)化纖維材料的起電機(jī)理、高性能研制和集成應(yīng)用研究,在自主式供電與自驅(qū)動(dòng)傳感智能纖維及織物方面取得了一系列創(chuàng)新性研究成果。已在Nat. Common.、Sci. Adv.、Adv. Mater.、Adv. Energy Mater.、Adv. Funct. Mater.、ACS Nano等期刊發(fā)表論文70余篇,其中第一/通訊作者50余篇,申請(qǐng)/授權(quán)國(guó)家專利8項(xiàng),他引次數(shù)超過5500次,H指數(shù)為35,研究成果被國(guó)內(nèi)外眾多媒體報(bào)道。在國(guó)內(nèi)外會(huì)議上邀請(qǐng)報(bào)告幾十余次,主持國(guó)家自然科學(xué)基金、北京市自然科學(xué)基金、中科院優(yōu)秀青年教師等項(xiàng)目8項(xiàng),入選北京市海外高層次青年人才,榮獲IAAM科學(xué)家獎(jiǎng)。擔(dān)任中文核心期刊《紡織學(xué)報(bào)》、Soft Science期刊和Nano Research Energy期刊青年編委,擔(dān)任Applied Sciences、Nanoenergy Advance期刊專刊編輯,擔(dān)任Nature Communications、Science Advances、Advanced Materials等眾多期刊的審稿專家。 二、 主要研究方向 1. 基于壓電/摩擦電效應(yīng)的機(jī)電轉(zhuǎn)化纖維織物的起電理論 2. 基于壓電/摩擦電效應(yīng)機(jī)電轉(zhuǎn)化纖維織物的電輸出和電響應(yīng)性能優(yōu)化與提升 3. 基于壓電/摩擦電效應(yīng)機(jī)電轉(zhuǎn)化纖維織物的規(guī);兄萍耙惑w化系統(tǒng)集成 4. 機(jī)電轉(zhuǎn)化纖維織物在自供電和自驅(qū)動(dòng)傳感方面的智能化應(yīng)用 三、 相關(guān)待遇 相關(guān)待遇按照納米能源所有關(guān)規(guī)定執(zhí)行,并結(jié)合研究組內(nèi)相關(guān)激勵(lì)辦法享受績(jī)效獎(jiǎng)勵(lì);工作滿一定年限后,表現(xiàn)優(yōu)異的助理研究員和博士后可晉升副研究員;同時(shí)各崗位可按國(guó)家和研究所相關(guān)規(guī)定申請(qǐng)獲取相關(guān)人才政策;在京無(wú)住房的青年職工可申請(qǐng)園區(qū)內(nèi)職工公寓。 四、 申請(qǐng)材料及要求 申請(qǐng)者以電子文件提交申請(qǐng)材料。 碩士/博士、科研助理、聯(lián)合培養(yǎng)學(xué)生申請(qǐng)材料包括但不限于: 1、 個(gè)人簡(jiǎn)歷; 2、 身份證明材料(包括學(xué)歷/學(xué)位證、專業(yè)技術(shù)任職資格證書、獲獎(jiǎng)證書等); 3、 聯(lián)合培養(yǎng)學(xué)生應(yīng)提供原導(dǎo)師知情同意書。 博士后、助理/副研究員應(yīng)額外提供 1、 以往學(xué)術(shù)成績(jī)概述和三篇代表論著; 2、 相關(guān)領(lǐng)域?qū)<乙恢羶煞馔扑]信; 3、 擬研究的方向及規(guī)劃; 4、 其它能證明本人工作能力及學(xué)術(shù)成就的相關(guān)材料。 五、 聯(lián)系方式 請(qǐng)申請(qǐng)人將申請(qǐng)材料的電子版發(fā)送至郵箱dongkai@binn.cas.cn;請(qǐng)?jiān)卩]件標(biāo)題中注明 “職位申請(qǐng)+姓名”。本招生/招聘長(zhǎng)期有效。期待各位青年才俊加入! 附課題組近年發(fā)表文章 可穿戴微納能量收集 Dong, K.; Wang, J.; Wang, Z. L.*, Shape adaptable and highly resilient 3D braided triboelectric nanogenerators as e-textiles for power and sensing. Nat Commun 2020, 11 (1), 2868. Cheng, R.; Dong, K.*; Wang, Z. L.*, Enhanced Output of On-Body Direct-Current Power Textiles by Efficient Energy Management for Sustainable Working of Mobile Electronics. Adv. Energy Mater. 2022, 12 (29), 2201532. Dong, K.; Wang, Z. L.*, Versatile Core-Sheath Yarn for Sustainable Biomechanical Energy Harvesting and Real-Time Human-Interactive Sensing. Adv. Energy Mater. 2018, 8 (23), 1801114. Ye, C.; Dong, K.*; Wang, Z. L.*, A Hydrophobic Self-Repairing Power Textile for Effective Water Droplet Energy Harvesting. ACS Nano 2021, 15 (11), 18172-18181. Dong, K.; Wang, Z. L.*, A Highly Stretchable and Washable All-Yarn-Based Self-Charging Knitting Power Textile Composed of Fiber Triboelectric Nanogenerators and Supercapacitors. ACS Nano 2017, 11 (9), 9490-9499. Shen, S.; Dong, K.*; Wang, Z. L.*, High-Efficiency Wastewater Purification System Based on Coupled Photoelectric-Catalytic Action Provided by Triboelectric Nanogenerator. Nano-Micro Lett. 2021, 13 (1), 194. 自驅(qū)動(dòng)傳感與醫(yī)療監(jiān)測(cè) Peng, X.; Dong, K.#; Wang, Z. L.*, A breathable, biodegradable, antibacterial, and self-powered electronic skin based on all-nanofiber triboelectric nanogenerators. Sci. Adv. 2020, 6 (26), eaba9624. Dong, K.; Wang, Z. L.*, A Stretchable Yarn Embedded Triboelectric Nanogenerator as Electronic Skin for Biomechanical Energy Harvesting and Multifunctional Pressure Sensing. Adv. Mater. 2018, 30 (43), e1804944. Wei, C.; Dong, K.*; Wang, Z. L.*, A Self‐Powered Body Motion Sensing Network Integrated with Multiple Triboelectric Fabrics for Biometric Gait Recognition and Auxiliary Rehabilitation Training. Adv. Funct. Mater. 2023 , 2303562. Zhang, Y.; Dong, K.*; Wang, Z. L.*, Underwater Monitoring Networks Based on Cable-Structured Triboelectric Nanogenerators. Research 2022, 2022, 9809406. Jiang, Y.; Dong, K.*; Wang, Z. L.*, Ultrathin Eardrum-Inspired Self-Powered Acoustic Sensor for Vocal Synchronization Recognition with the Assistance of Machine Learning. Small 2022, 18 (13), 2106960. Sheng, F.; Dong, K.*; Wang, Z. L.*, Ultrastretchable Organogel/Silicone Fiber-Helical Sensors for Self-Powered Implantable Ligament Strain Monitoring. ACS Nano 2022, 16 (7), 10958-10967. Ning, C.; Dong, K.*; Wang, Z. L.*, Helical Fiber Strain Sensors Based on Triboelectric Nanogenerators for Self-Powered Human Respiratory Monitoring. ACS Nano 2022, 16 (2), 2811-2821. Jiang, Y.; Dong, K.*; Wang, Z. L.*, Knitted self-powered sensing textiles for machine learning-assisted sitting posture monitoring and correction. Nano Res. 2022, 15 (9), 8389-8397. Sheng, F.; Dong, K.*; Wang, Z. L.*, Self-Powered Smart Arm Training Band Sensor Based on Extremely Stretchable Hydrogel Conductors. ACS Appl. Mater. Interfaces 2021, 13 (37), 44868-44877. Shen, S.; Dong, K.*; Wang, Z. L.*, Electromagnetic Shielding Triboelectric Yarns for Human–Machine Interacting. Adv. Electron. Mater. 2021, 8 (2), 2101130. 摩擦電效應(yīng)智能纖維織物規(guī)模化研制 Li, Y.; Dong, K.*; Wang, Z. L.*, Large-scale fabrication of core-shell triboelectric braided fibers and power textiles for energy harvesting and plantar pressure monitoring. Ecomat 2022, 4 (4), e12191. Ning, C.; Dong, K.*; Wang, Z. L.*, Scalable one-step wet-spinning of triboelectric fibers for large-area power and sensing textiles. Nano Res. 2023. Li, Y.; Dong, K.*; Wang, Z. L.*, Continuous Preparation of Chitosan-Based Self-Powered Sensing Fibers Recycled from Wasted Materials for Smart Home Applications. Adv. Fiber Mater. 2022, 4, 1584–1594. 摩擦電效應(yīng)智能纖維織物相關(guān)綜述 Dong, K.; Wang, Z. L.*, Advances in High-Performance Autonomous Energy and Self-Powered Sensing Textiles with Novel 3D Fabric Structures. Adv Mater 2022, 34 (21), e2109355. Dong, K.; Peng, X.; Wang, Z. L.*, Fiber/Fabric‐Based Piezoelectric and Triboelectric Nanogenerators for Flexible/Stretchable and Wearable Electronics and Artificial Intelligence. Adv. Mater. 2019, 32 (5), e1902549. Dong, K.; Wang, Z. L.*, 3D Orthogonal Woven Triboelectric Nanogenerator for Effective Biomechanical Energy Harvesting and as Self-Powered Active Motion Sensors. Adv. Mater. 2017, 29 (38), 1702648. Dong, K.; Wang, Z. L.*, Smart textile triboelectric nanogenerators: Current status and perspectives. MRS Bull. 2021, 46 (6), 512-521. Dong, K.; Peng, X.; Cheng, R.; Wang, Z. L.*, Smart Textile Triboelectric Nanogenerators: Prospective Strategies for Improving Electricity Output Performance. Nanoenergy Advances 2022, 2 (1), 133-164. Ning, C.; Zheng, G.; Dong, K.*, Emerging Self‐Powered Autonomous Sensing Triboelectric Fibers toward Future Wearable Human‐Computer Interaction Devices. Advanced Sensor Research 2023, 2 (2), 2200044. |
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