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NH3 Gas Sensor Based on CNTs Student: Trần Phúc Thành S. I. D: 20092454 Instructor: Prof. Nguyễn Hữu Lâ

NH3 GAS SENSOR-CNTs

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Page 1: NH3 GAS SENSOR-CNTs

NH3 Gas Sensor Based on CNTs

Student: Trần Phúc ThànhS. I. D: 20092454Instructor: Prof. Nguyễn Hữu Lâm

Page 2: NH3 GAS SENSOR-CNTs

Outline

Problem statementMissionSolution/ Material selectionDesign

TechnologyExpectation

CostingSummaryReferences

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Problem statementAmmonia (NH3) is a

colorless gas with a characteristic odor.

Ammonia is widely used in the industrial workplace. It is used as a refrigerant, cleaning product and building block for fertilizers and pharmaceuticals

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However!Ammonia is both caustic and hazardous

Classification:Extremely toxic100-500 ppm: deathFlammableHarmful for agriculture, industry

Problem statement

Page 5: NH3 GAS SENSOR-CNTs

Using WO3–Cr, SnO2–Pd, TiO2–Cr as sensor materials for NH3.

Need high temperature to operate

NH3 Sensors Today

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MissionFind a new kind of materials

that has:Ability of sensing NH3 gasHigh sensitivity at room

temperatureHigh selectivity at room

temperatureShort response timeTo apply in NH3 gas sensors

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Solution-CNTs

Choose nano structure materials to increase A/V

CNTs as sensing materialsSensing at room

temperatureHigh selectiveStable physically and

chemically

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CNTs- DefinitionCarbon nanotubes (CNTs)

are allotropes of carbon with a cylindrical nanostructure.

Single Walled (SW-CNTs)Multi Walled (MW-CNTs)

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- Single-wall nanotubes (SWNTs)

- Multi-wall nanotubes (MWNTs)

Carbon Nanotubes

~ 1-2 nm

Few microns

TEM images of various MWNTs ~ 2 - 50 nm

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PropertiesElectrical

High electric conductivity (higher than copper)

Easy process for Conductive Semi-conductiveThermal

High thermal conductivity (higher than silicon)

Stable at high temperatureMechanical

100 times stronger than steel but very light Elastic behavior (Pressing CNT tip bend and

recover to its original state)Chemical

Rarely react with other compounds Chemically stable

(a) Conductive(b) Semiconductiv

e(c) Diode

‘Kink CNT’: divide conductive and semi-conductive

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TechnologyProduce sensor

CVD furnaceElectrodes

deposited catalystsGases( C2H2, N2 ,

NH3 )

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TechnologyCVD – Implementation is easy

– Run 2 times per day

Produce massively

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The electrodes after processing

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Expectations/ AdvantagesHigh sensitivityHigh selectivityStable with timeWorking at room temperature

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CostingNew sensors (CNTs)

Do not need micro-furnace long-term benefits

Stable with time, chemical last long

Possibility of massive production

Old ones (WO3)Need micro-

furnace consume a lot of me]

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SummaryProblem/SolutionTechnology and expectationCosting

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QUESTION!

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Thanks For Your Attention!