Journal
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2025 |
Multigas Identification by Temperature-Modulated Operation of a Single Anodic Aluminum Oxide Gas Sensor Platform and Deep Learning Algorithm
Lee Byeongju ACS SENSORS, v.10, no.2, pp.954-964 |
1 |
원문
|
Journal
|
2023 |
Highly Dispersed Pt-Incorporated Mesoporous Fe2O3 for Low-Level Sensing of Formaldehyde Gas
오경희 Nanomaterials, v.13, no.4, pp.1-13 |
7 |
원문
|
Journal
|
2023 |
Highly Dispersed Pt-Incorporated Mesoporous Fe2O3 for Low-Level Sensing of Formaldehyde Gas
Seung Jin Jeon Nanomaterials, v.13, no.4, pp.1-13 |
7 |
원문
|
Journal
|
2020 |
Synthesis and Gas Sensing Properties of WS2 Nanocrystallites Assembled Hierarchical WS2 Fibers by Electrospinning
Youn Doo Hyeb Nanotechnology, v.31, no.10, pp.1-12 |
24 |
원문
|
Journal
|
2014 |
A PPB-Level Formaldehyde Gas Sensor Based on CuO Nanocubes Prepared Using a Polyol Process
Park Hyung Ju Sensors and Actuators B : Chemical, v.203, pp.282-288 |
125 |
원문
|
Journal
|
2014 |
Ultrafast Response Sensor to Formaldehyde Gas Based on Metal Oxide
Choi Nak Jin Journal of Nanoscience and Nanotechnology, v.14, no.8, pp.5807-5810 |
13 |
원문
|
Journal
|
2013 |
Stacked-Type Potentiometric Solid-State CO2 Gas Sensor
Choi Nak Jin Sensors and Actuators B : Chemical, v.187, pp.340-346 |
20 |
원문
|
Journal
|
2012 |
Fast Response Formaldehyde Gas Sensor for USN Application
Choi Nak Jin Sensors and Actuators B : Chemical, v.175, pp.132-136 |
23 |
원문
|
Conference
|
2011 |
Fast Response Formaldehyde Gas Sensor for USN Application
Choi Nak Jin Eurosensors 2011, pp.1073-1076 |
2 |
원문
|
Journal
|
2010 |
Pd-Doped TiO2 Nanofiber Networks for Gas Sensor Applications
Jaehyun Moon Sensors and Actuators B : Chemical, v.149, no.1, pp.301-305 |
195 |
원문
|
Journal
|
2010 |
High Sensitive NO2 Gas Sensor with Low Power Consumption Using Selectively Grown ZnO Nanorods
Park So Jeong Journal of Nanoscience and Nanotechnology, v.10, no.5, pp.3385-3388 |
13 |
원문
|
Journal
|
2010 |
Low Power Consumption and High Sensitivity Carbon Monoxide Gas Sensor Using Indium Oxide Nanowire
Moon Seungeon Journal of Nanoscience and Nanotechnology, v.10, no.5, pp.3189-3192 |
16 |
원문
|
Journal
|
2010 |
SnO2–ZnO hybrid nanofibers-based highly sensitive nitrogen dioxides sensor
Park Jin Ah Sensors and Actuators B : Chemical, v.145, no.1, pp.592-595 |
88 |
원문
|
Journal
|
2010 |
Low Power Consumption and High Sensitive NO2 Micro Gas Sensor based on Co-planar Micro-heater fabricated by using CMOS-MEMS Process
Moon Seungeon Journal of the Korean Physical Society, v.56, no.1, pp.434-438 |
12 |
원문
|
Journal
|
2009 |
Structural, Electrical and Gas Sensing Properties of Eletrospun TiO2 Nanofibers
Park Jin Ah Thin Solid Films, v.518, no.22, pp.6642-6645 |
27 |
원문
|
Journal
|
2009 |
Semiconducting ZnO Nanofibers as Gas Sensors and Gas Response Improvement by SnO2 Coating
Jaehyun Moon ETRI Journal, v.31, no.6, pp.636-641 |
26 |
원문
|
Journal
|
2009 |
Fabrication and NO2 Sensing Characteristics of an In2O3 Nanowire Gas Sensor
Moon Seungeon Journal of the Korean Physical Society, v.54, no.2, pp.830-834 |
|
|
Journal
|
2008 |
Electrical Characterization of ZnO Single Nanowire Device for Chemical Sensor Application
Kim Eunkyoung Journal of Nanoscience and Nanotechnology, v.8, no.9, pp.4698-4701 |
8 |
원문
|
Journal
|
2008 |
The Highly Sensitive NO2 Gas Sensor Using ZnO Nanorods Grown by the Sol-gel Method
Park So Jeong 센서학회지, v.17, no.2, pp.147-150 |
|
원문
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Conference
|
2008 |
High Sensitivity and Low Power Consumption CO Gas Sensor based on In2O3 Nanowire
Kwak Junhyuk 한국 반도체 학술 대회 (KCS) 2008, pp.1-3 |
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