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2022年4月,浙江锌芯钛晶科技有限公司与杭州领挚科技有限公司正式签署战略合作协议。领挚科技专注于薄膜晶体管TFT半导体技术及其在交叉领域的产业化。锌芯钛晶致力于开发高光效、宽色域、低成本的钙钛矿发光材料与LED显示阵列。双方一致同意加强在钙钛矿发光显示应用开发方面的合作,将围绕钙钛矿LED的商用功能材料导入、薄膜晶体管阵列背板、外围电子电路系统等领域建立战略合作伙伴关系,发掘未来产业化潜在...
2022-06-24
近期,上海交通大学,领挚科技和SmartKem合作的论文“ Eliminating Leakage Current in Thin-Film Transistor of Solution-Processed Organic Material Stack for Large-Scale Low-Power Integration ”在Advanced Electronic Materials上...
2022-05-20
2022年4月,杭州领挚科技有限公司(LinkZill)与深圳森美协尔科技有限公司(SEMISHARE)正式签署战略合作协议。SEMISHARE作为先进晶圆探针台制造商,立足于服务芯片产业,助力中国制造自主领先的芯片。LinkZill专注于薄膜晶体管TFT半导体在生命科学交叉领域的产业化。双方携手展开长期深入合作,就半导体表征设备与薄膜晶体管TFT技术结合,以探索在生物半导体领域的应用及产业...
2022-05-20
匆匆三载初心不改,LinkZill与你相遇至此幸甚至哉
2022-02-16
何俊峰先生于2021年10月加入领挚科技,并担任电子工程部部长一职。
2022-02-16
以诚挚为主,为梦想而突破;以稳健为主,为美好而前行;领挚科技三载芳华,初心不改筑梦前行。2022/01/08迎来了三周年庆典。
2022-01-18
小小“打结”揭开了消化道测压的繁琐操作流程,在揭开新型消化道测压仪的神秘面纱之前,请允许小编带你认识一下“挚盒01RC”的伯乐——南科望博士:南科望博士浙江杭州人,本科毕业于美国莱斯大学材料工程系,博士毕业于伊利诺伊大学香槟分校,并从事具有仿生特性的三维柔性电路在生物医学传感领域的相关研究。博士毕业后,他先后在哈佛大学和MIT从事博后研究,并于2021年晋升为研究员。据悉,他曾先后师从两位美...
2022-06-16
初次见到领挚科技CEO冯林润博士的人都会有些诧异此人实在不像一理工科博士,甚至有合作伙伴曾开玩笑道:“这人的博士不会是买的吧?”
2022-02-16
集微网报道,2021年“芯力量”大赛初赛持续火爆!5月13日,最新一场初赛迎来了第四代半导体材料、固态激光雷达、先进封装和TFT芯片4个大热赛道的选手。
2021-05-18
近日,由广东奥素液芯微纳科技有限公司(ACXEL)和杭州领挚科技有限公司(LinkZill)等机构合作开发的有源矩阵数字微流控芯片(AM-EWOD)作为重要研究成果于微电子器件领域的顶级会议IEDM会议成功发表。此芯片基于极简的电路设计而获得了极高的像素密度,实现片上高通量、并行处理多通道的生物样本,且样本的处理具有密封性和各通道的独立性,有效避免了交叉污染的产生。基于此芯片生成的微液滴,其...
2020-12-29
日前,领挚科技与天马微电子签署合作协议。双方将结合自身在薄膜晶体管(TFT)制造和新应用开发优势,联合进行有源微流控、新型光电传感器阵列等TFT前沿应用产品开发。TFT是一种核心半导体开关元器件。推动以TFT为代表的新型半导体技术在新型显示...
2020-07-01
【在上海交大电子系读博是一种怎样的体验?】        今年9月,我系将迎来新的一批博士研究生—“科研小白”,他...
2019-05-29
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[2023]


Fang Xin Hu, Guangxuan Hu, Dong Ping Wang, Xinxuan Duan, Linrun Feng, Bo Chen, Yuhang Liu, Jie Ding, Chunxian Guo, and Hong Bin Yang,“Integrated Biochip–Electronic System with Single-Atom Nanozyme for in Vivo Analysis of Nitric Oxide”,ACS.Nano,2023.



[2022]

L. Han, J. Li, S. Ogier, Z. Liu, L. a. Deng, Y. Cao, T. Shan, D. Sharkey, L. Feng, A. Guo, X. Li, J. Zhang, and X. Guo, “Eliminating Leakage Current in Thin-Film Transistor of Solution-Processed Organic Material Stack for Large-Scale Low-Power Integration”, Advanced Electronic Materials, 2022.


W. Tang; Z. Wang; Z. Lin; L. Feng; Z. Liu; X. Li; P. D. Ye; X. Guo; M. Si,“Monolithic 3D Integration of Vertically Stacked CMOS Devices and Circuits with High-Mobility Atomic-Layer-Deposited In2O3 n-FET and Polycrystalline Si p-FET: Achieving Large Noise Margin and High Voltage Gain of 134 V/Vin 2022 IEEE International Electron Devices Meeting (IEDM).


, , , , , , , , , Thin-film transistor arrays for biological sensing systems",Flexible and Printed Electronics,2022.



[2020]


H. Ma, S. Shi, K. Jin, D. Wang, S. Hu, Y. Su, Y. Zhang, J. Li, Z. Liu, C. Jiang, L. Feng, X. Guo and A. Nathan, "Large-area manufacturable active matrix digital microfluidics platform for high-throughput biosample handling", in 2020 IEEE International Electron Devices Meeting (IEDM).

Y. Huang, W. Tang, L. Feng, S. Chen, J. Zhao, Z. Liu, L. Han, B. Ouyang, and X. Guo, "Printable Low Power Organic Transistor Technology for Customizable Hybrid Integration towards Internet of Everything", IEEE Journal of the Electron Devices Society, 2020.

Y. Peng, F. Li, Y. Wang, Y. Li, R. L. Z. Hoye, L. Feng, K. Xia, V. Pecunia, "Enhanced Photoconversion Efficiency in Cesium-Antimony-Halide Perovskite Derivatives by Tuning Crystallographic Dimensionality" , Applied Materials Today, 2020.


[2019]

Y. Huang, Y. Song, Y. Tang, Z. Liu, L. Han, Q. Zhang, B. Ouyang, W. Tang, L. Feng, and X. Guo, "Solution Processed Highly Uniform and Reliable Low Voltage Organic FETs and Facile Packaging for Handheld Multi-ion Sensing", in 2019 IEEE International Electron Devices Meeting (IEDM).

M. Li, Z. Liu, L. Feng, J. Fan, L. Han, S. Ogier, H. Zhou, and X. Guo, “Facile four-mask processes for organic thin-film transistor integration structure with metal interconnect", IEEE Electron Device Lett., 2019.


[2019之前]

L. Feng, Y. Huang, J. Fan, J. Zhao, S. Pandya, S. Chen, W. Tang, S. Ogier, and X. Guo, “Solution Processed High Performance Short Channel Organic Thin-Film Transistors with Excellent Uniformity and Ultra-low Contact Resistance for Logic and Display", in 2018 IEEE International Electron Devices Meeting (IEDM).

L. Feng, C. Jiang, H. Ma, X. Guo, and A. Nathan, “All ink-jet printed low-voltage organic field-effect transistors on flexible substrate”, Organic Electronics, 2016.

L. Feng, J. Anguia, W. Tang, J. Zhao, X. Guo, and S. R. P. Silva, “Room temperature grown high quality polymer like carbon gate dielectric for organic thin film transistors”, Adv. Electron. Mater., 2016.

Z. Liu, J. Xu, D. Chen, and G. Shen "Flexible electronics based on inorganic nanowires", Chemical Society Reviews, 2015.

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