第2卷 电导型传感器 上册-化学传感器:仿真与建模-影印版
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- ISBN:9787560349022
- 装帧:一般胶版纸
- 册数:暂无
- 重量:暂无
- 开本:16开
- 页数:486
- 出版时间:2015-01-01
- 条形码:9787560349022 ; 978-7-5603-4902-2
本书特色
《化学传感器·仿真与建模(第2卷):电导型传感器(上)(影印版)(英文)》为传感材料与传感技术丛书之一。以水杨酸为模板分子,通过制备印迹聚合物作为敏感材料,制成检测水杨酸的电导型传感器。测试了水杨酸印迹聚物[p(sa)]对水杨酸(sa)的吸附特性。
内容简介
This series,Chemical Sensors:Simulation and Mod.eling,is the perfect complement to Momentum Press's six-volume reference series,Chemical Sensors:Fundamentals of Sensing Materials and Chemical Sensors: Comprehensive Sensor Technologies,which present detailed information about materials,technologies,fabrication,and applications of various devices for chemical sensing.Chemical sensors are integral to the automation of myriad industrial processes and everyday monitoring of such activities as public safety,engine performance,medical therapeutics,and many more.
目录
preface
about the editor
contributors
1 numerical simulation of electrical responses to gases in advanced structures
a.setkus
1 introduction
2 analytic and numeric modeling
2.1 basic equations
2.2 analytical approaches
2.3 numerical simulations
2.4 verification of models
3 resistive sensors
3.1 introductory remarks
3.2 polycrystalline films
3.3 nanostructured films
3.4 conductive polymer layers
3.5 molecular structures
4 concluding comments
references
2 co-adsorption processes and quantum mechanical modeling of gas-sensing effects
j-j.velasco velez
1 introduction
2 solid-gas interaction
2.1 adsorption
2.2 chemisorption
2.3 electronic transitions in chemisorption
2.4 chemisorption in equilibrium, "wolkenstein" isotherm
2.5 reaction time
2.6 charge transfer model (ctm)
3 co-adsorption
3.1 quantummodel
3.2 statisticalmodel
3.3 adsorptiontime
4 discussion
5 summary
6 nomenclature
dedication
acknowledgment
references
3 nanosensors: a platform to model the sensing mechanisms in metal oxides
f.hemandez-ramirez
j.d.prades
a.cirera
1 introduction
2 toward a better description of gas-sensing mechanisms in
metal oxides: oxygen diffusion in tin dioxide nanowires
2.1 description of oxygen sensing using diffusion
2.2 summary
3 toward a systematic understanding of photo-activated gas sensors
3.1 experimental background 1i
3.2 theoretical model of the photo-activated response to oxidizing gases (no2)
3.3 comparison with experiments
3.4 other target gases
3.5 summary
4 conclusions
acknowledgments
references
……
4 sureace state models for conductance response of metal oxide gas sensors during thermal transients
5 conductance transient analysesof metal oxide gas sensors on the example of spinel ferrite gas sensors
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