[1] Hongcheng Zhu, Linxiu Jiang, Shouru Xie, Yongrong
Jiang, and Hua Li*(李华). Plasma-jet sterilization enhanced by ion wind[J]. Journal of vacuum
science & technology A. 2021, 39(3):033001 (SCI,EI)
[2] Li, H.(李华), Du, X., Zeng, H. et al. Helium-assisted enhanced discharge in a
hollow needle for high-field asymmetric ion mobility spectrometry
(FAIMS). Analytical Bioanalytical Chemistry (2021)(online)(SCI)
[3] Hongcheng Zhu, Limin Guo, Minglei Li, Yongrong
Jiang**, Hua Li(李华)*.
Comparison of spatial distribution of active substances and sterilization range
generated by array of printed-circuit-board plasma jets [J]. Vacuum,
2021,184:109982.(SCI,EI)
[4] Xiaoxia Du, Jiahao Mou, Hongda Zeng, Ruosheng Zeng,
Yongrong Jiang& Hua Li(李华)* . Printed Circuit Board (PCB) Brazing and Ion Source Integration of a
High-Field Asymmetric Ion Mobility Spectrometry (FAIMS) Chip [J]. Analytical
Letters, 2020(11):1-12.(SCI,EI)
[5] Li Hua(李华), Yun Hongmei, Du Xiaoxia, Guo Chaoqun, Zeng Ruosheng, Jiang Yongrong, Chen Zhencheng . Design, Fabrication and
Mass-spectrometric Studies of a Micro Ion Source for High-Field Asymmetric
Waveform Ion Mobility Spectrometry [J]. Micromachines, 2019, 10(5):286. (SCI,EI)
[6] Hua Li(李华), Xiaoxia Du, Linxiu Jiang, Shejiao Deng, Shouru Xie, Peng Zeng, Ruosheng
Zeng, Yongrong Jiang, Zhencheng Chen. A needle-rectangular loop sterilizer with
self-ejected plasma by using positive and negative direct-current voltages [J]. AIP
Advances, 2019, 9:055229 (SCI,EI)
[7] Li Hua(李华), Yun Hongmei, Jiang Yongrong, Zeng Ruosheng,Chen Zhencheng . A needle-to-post air discharge ion
source in tandem with FAIMS system [J]. PLoS ONE, 2019, 14(8):e0221080. (SCI,EI)
[8] 李华, 云红梅,
杜晓霞,等.
采用针-环离子源的集成式高场非对称波形离子迁移谱系统[J]. 光学 精密工程, 2019,
27(6):1255. (EI)
[9] 赵思洋,杜晓霞,游占华,牟家浩,曾鸿达,肖文香,朱健铭,李华*.采集控制多线程一体化的集成式FAIMS主控系统设计与实现[J].仪器仪表与传感器,2020,11:68
[10] 覃慧珊,黄莨元,游占华,杨子葵,肖文香,李华*.基于QT的FAIMS气体传感器测控系统设计与实现[J]. 传感技术学报,2020,33(9):1354
[11] Hua
Li, Linxiu Jiang , Chaoqun Guo, Jianmin Zhu , Yongrong Jiang , and Zhencheng
Chen*, An Integrated Microfabricated Chip with Double Functions as an Ion
Source and Air Pump Based on LIGA Technology, Sensors, 2017, 17(1): 87-98(SCI,EI)
[12] Hua
Li, Linxiu Jiang, Chaoqun Guo, Jianmin Zhu, Yongrong
Jiang, Wenxiang Xiao, Cheng Fang,
and Zhencheng
Chen*, Effect of cylinder
electrode arrangement on the ionic wind properties of needle–cylinder
electrodes, Journal of Electrostatics, 2017, 86: 59-68(SCI,EI)
[13] 李 华,郭超群,蒋林秀,蒋永荣,朱健铭,肖文香,韦宛伶,陈真诚*,敞开式离子源和微型气泵集成的微型针-柱放电结构芯片设计与实验分析,光学 精密工程,2017(EI)
[14] Hua
Li, Chaoqun Guo, Yukai Li, Xialei Hong, Jianmin Zhu, and Zhencheng Chen*,
Effects of atmospheric-pressure discharge type on ionic wind velocity for
needle-to-cylinder electrode, Journal of vacuum science & technology A.
2016, 34(3): 1-8 (SCI,EI)
[15] Hua
Li, De-Cha Zeng, Jun-Yu Liu, Zhen-Cheng Chen*. Realization of DC atmospheric
pressure glow discharge without external airflow, Vacuum, 2015, 113: 28-35(SCI,EI)
[16] Hua
Li, Chaoqun Guo, Yukai Li, Yaobin Chen, Jianchen Liu, Zhencheng Chen*,
Deformation Characteristic of MEMS microspring under static and shock
load, Microsystem Technologies, 2015,
12: 1-12(SCI,EI)
[17] 李 华,李玉凯,郭超群,陈耀彬,陈真诚*,采用离子风实现敞开式离子源和微型气泵集成系统的设计与实验,真空科学与技术学报,2015,35(9):1112
~ 1118(EI)
[18] 李 华,李玉凯,郭超群,陈耀彬,洪夏蕾,李智江,肖文香,陈真诚*,利用离子风实现后吸式进样与电离集成的离子源研究,光学 精密工程,2015,23(12):3405
~ 3413(EI)
[19] 李 华*,曾德查,刘钧誉,韦昌严,刘春霞,针尖曲率对敞开式针-柱电极结构气体放电的影响,纳米技术与精密工程,2015,13(1):17
~ 21
[20] 李 华,韦昌严,刘春霞,神显豪,陈真诚*,实现大气压负直流辉光放电的针-柱电极结构设计与实验,光谱学与光谱分析,2014,34(7):1797
~ 1800(SCI,EI)
[21] 李 华,韦昌严,曾德查,陈真诚*,针-柱结构敞开式离子源和微型气泵集成系统的放电特性,光学 精密工程,2014,22(6):1531
~ 1537(EI)