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Name:
Ma Hanbin
Education:
Positions:
Academic title:
Professor
Phone:
(0512) 69588081
Fax:
E-mail:
mahb@sibet.ac.cn
Personal Website:
Postal Code:
215163
Mailing Address:
No.88,Keling Road, Suzhou New District, China

Resume:

Direction:
Community service:

Achievements:
Article:

·         Hanbin Ma, Richard Wallbank, Reza Chaji, Jiahao Li, Yuji Suzuki, Chris Jiggins and Arokia Nathan. "An impedance-based integrated biosensor for suspended DNA characterization." Scientific Report, Nature Publishing Group, 3:2730.

·         Hanbin Ma, Jiahao Li, Xiang Cheng and Arokia Nathan. "Heterogeneously integrated impedance measuring system with disposable thin-film electrodes." Sensors and Actuators B: Chemical 211 (2015): 77-82.

·         Hanbin Ma, Yang Su and Arokia Nathan. "Cell constant studies of bipolar and tetrapolar electrode systems for impedance measurement." Sensors and Actuators B: Chemical (2015): 1264-1270.

·         Hanbin Ma, Yang Su, Chen Jiang and Arokia Nathan. "Inkjet-printed Ag electrodes on paper for high sensitivity impedance measurements." RSC Advances 6 (87), 84547-84552. (IF3.3)

·         Constantinos Tsangarides, Hanbin Ma and Arokia Nathan. "ZnO nanowire array growth on precisely controlled patterns of inkjet-printed zinc acetate at low-temperatures." Nanoscale 8 (22), 11760-11765

·         Yang Su, Arokia Nathan, Hanbin Ma, Yan Zhang and Hua Wang. "High efficiency Cu2O nanostructures for visible light photocatalysis." RSC Advances 6 (81), 78181-78186

·         Linrun Feng, Chen Jiang, Hanbin Ma, Xiaojun Guo and Arokia Nathan. "All ink-jet printed low voltage organic field-effect transistors on flexible substrate." Organic Electronics 38, 186-192

·         Chen Jiang, Hanbin Ma, David G. Hasko, and Arokia Nathan. "Influence of polarization on contact angle saturation during electrowetting." Applied Physics Letters 109, no. 21 (2016): 211601.

·         Yang Su, Hongfei Li, Hanbin Ma, John Robertson, Arokia Nathan. "Controlling surface termination and facet orientation in Cu2O nanoparticles for high photocatalytic activity: a combined experimental and density functional theory study." ACS Applied Materials & Interfaces, 2017, 9(9), pp 8100-8106.

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