• Title/Summary/Keyword: HF Etching

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Structural and Optical Properties of Porous Silicon Prepared by Electrochemical Etching

  • Lee, Jeong-Seok;Cho, Nam-Hee
    • Journal of the Korean Ceramic Society
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    • v.39 no.2
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    • pp.109-112
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    • 2002
  • The structural and optical features of Porous Silicon(PS) were investigated; the porous silicon was prepared by electrochemical etching of silicon wafers in HF solution. The morphologies and Photoluminescece(PL) features of the PS were investigated in terms of etching time, current density and aging conditions. The average pore diameter and pore depth were determined by current density and etching time, respectively. As-prepared PS exhibited the maximum PL peak at the wavelength of ∼ 450 nm. The degree of deviation from as-prepared PS during aging treatment seemed to depend on the microstructure as well as morphology of the PS. It is found that etching current density played an important role on the microstructural features of the PS.

Fabrication of the accelerometer using the nano-gap trench etching (나노갭 트렌치 공정을 이용한 가속도센서 제작)

  • Kim, Hyeon-Cheol;Kwon, Hee-jun
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.9 no.2
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    • pp.155-161
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    • 2016
  • This paper proposes a novel fabrication method for a capacitive type micro-accelerometer with uniform nano-gap using photo-assisted electro-chemical etching. The sensitivity of the accelerometer should be improved while the electrodes between the inertial mass and the sensing comb should be narrowed. In this paper the nano-gap trench structure is fabricated using the photo-assisted electrochemical etching method. The sensor was designed and analysed using ANSYS simulator. The characteristics of the etching were observed according to the dc bias, the light intensity, the composition of the solution, the temperature of the solution, and the pattern pitch variation. The optimum etching conditions were dc bias of 2V, Blue LED of 20mA, 49wt% HF:DMF:D.I.Water=1:20:10, the pattern pitch of $20{\mu}m$. Uniform trench structure with width of 344nm and depth of $11.627{\mu}m$ are formed using the optimum condition.

The study on the Removal of Metallic Impurities with using UV/ozone and HF cleaning (금속불순물 제거를 위한 UV/ozone과 HF 세정연구)

  • Lee, Won-Jun;Jeon, Hyeong-Tak
    • Korean Journal of Materials Research
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    • v.6 no.11
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    • pp.1127-1135
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    • 1996
  • 반도체 소자가 고집적화 됨에 따라 단위공정의 수가 증가하게 되었고 동시에 실리콘 기판의 오염에 대한 문제가 증가하였다. 실리콘 기판의 주 오염물로는 유기물, 파티클, 금속분순물 등이 있으며 특히, Cu와 Fe과 같은 금속불순물은 이온주입 공정, reactive ion etching, photoresist ashing과 같은 실 공정 중에 1011-1013atoms/㎤정도로 오염이 되고 있다. 그러나 금속불순물 중 Cu와 같은 전기음성도가 실리콘 보다 큰 오염물질은 일반적인 습석세정방법으로는 제거하기 힘들다. 따라서 본 연구에서는 Cu와 Fe과 같은 금속불순물을 제거할 목적을 건식과 습식 세정방법을 혼합한 UV/ozone과 HF세정을 제안하여 실시하였다. CuCI2와 FeCI2 표준용액으로 실리콘 기판을 인위적 오염한 후 split 1(HF-only), split 2 (UV/ozone+HF), split 3 (UV/ozone + HF 2번 반복), split 4(UV/ozone-HF 3번 반복)를 실시하였고 TXRF(Total Reflection X-Ray Fluorescence)와 AFM(Atomic Force Microscope)으로 금속불순물 제거량과 표면거칠기를 각각 측정하였다. 또한 contact angle 측정으로 세정에 따른 표면상태도 측정하였다. TXRF 측정결과 split 4가 가장 적은 양의 금속불순물 잔류량을 보였으며 AFM 분석을 통한 표면거칠기도 가장 작은 RMS 값을 나타내었다. Contact angle 측정 결과 UV/ozone 처리는 친수성 표면을 형성하였고 HF처리는 소수성 표면을 형성하였다.

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A New HF/$NH_4F$/Glycerine Aqueous Solution for Protection of Al Layers During Sacrificial Etching of PSG Films (PSG 희생층 식각시 Al층을 보호하기 위한 새로운 HF/$NH_4F$/Glycerine 혼합 식각액)

  • Kim, Sung-Un;Paik, Seung-Joon;Kim, Im-Jung;Lee, Seung-Ki;Cho, Dong-Il
    • Journal of Sensor Science and Technology
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    • v.8 no.5
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    • pp.414-420
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    • 1999
  • The oxide sacrificial layer technology is one of the key technologies in surface micromachining. However, the commonly used aqueous HF solutions, including the $NH_4F$ buffered HF solutions (BHF), are known to attack the Al metal layers during the oxide sacrificial etch. A mixed $NH_4F$/HF/glycerine aqueous solution of 4:1:2 ratio is known to have the best etch selectivity between oxide and AI, but even this sacrificial etchant has a significant etch rate for AI. This paper reports an extensive experimental study on various concentration ratios for HF, $NH_4F$ and glycerine, and develops the optimal mixture ratio for sacrificial etching. At the $NH_4F$/HF/glycerine ratio of 2:1:4, the etch selectivity between PSG and Al improves by approximately 6 times over the previously known best selectivity, to a value of 7,700. At this condition, the measured etch rate of PSG film is approximately $2.1\;{\mu}m/min$, which is sufficiently fast. The developed sacrificial etchant allows the addition of a Al metal layer in surface micromachining, without the worry of Al layer erosion during sacrificial etch.

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Development of sacrificial layer wet etch process of TiNi for nano-electro-mechanical device application

  • Park, Byung Kyu;Choi, Woo Young;Cho, Eou Sik;Cho, Il Hwan
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.13 no.4
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    • pp.410-414
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    • 2013
  • We report the wet etching of titanium nickel (TiNi) films for the production of nano-electro-mechanical (NEM) device. $SiO_2$ and $Si_3N_4$ have been selected as sacrificial layers of TiNi metal and etched with polyethylene glycol and hydrofluoric acid (HF) mixed solution. Volume percentage of HF are varied from 10% to 35% and the etch rate of the $SiO_2$, $Si_3N_4$ and TiNi are reported here. Within the various experiment results, 15% HF mixed polyethylene glycol solution show highest etch ratio between sacrificial layer and TiNi metal. Especially $Si_3N_4$ films shows high etch ratio with TiNi films. Wet etching results are measured with SEM inspection. Therefore, this experiment provides a novel method for TiNi in the nano-electro-mechanical device.

Fabrication of Polysilicon Microstructures Using Vapor-phase HF Etching and Annealing Techniques (HF 증기상 식각과 열처리를 이용한 다결정 규소 미세 구조체의 제작)

  • Park, K.H.;Lee, C.S.;Jung, Y.I.;Lee, J.Y.;Lee, Y.I.;Choi, B.Y.;Lee, J.H.;Yoo, H.J.
    • Proceedings of the KIEE Conference
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    • 1995.11a
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    • pp.603-605
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    • 1995
  • We present a novel method. to fabricate surface micromachined structures without their sticking on the substrate. An anhydrous HF/$CH_3OH$ vapor-phase etching (VPE) of sacrificial $SiO_2$ layers was employed to release 0.5-2 {\mu}m$ thick polysilicon cantilevers. The fabricated structures were observed using scanning electron microscope and 3-dimensional optical microscope. The results show that we can successfully make cantilever beams up to 1200{\mu}m$ long without sticking. Annealing effects on residual stress of polysilicon microstructures were also investigated. Anneal ins at 1100$^{\circ}C$ for 1 hour was found to be effective to release the residual stress of the polysilicon microstructures. These VPE and anneal ins techniques will be useful in surface micromachining technologies.

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A Study on Fabrication of Piezorresistive Pressure Sensor (벌크 마이크로 머쉬닝에 의한 다결정 실리콘 압력센서 제작 관한 연구)

  • 임재홍;박용욱;윤석진;정형진;윤영수
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1999.05a
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    • pp.677-680
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    • 1999
  • Rapid developing automation technology enhances the need of sensors. Among many materials, silicon has the advantages of electrical and mechanical property, Single-crystalline silicon has different piezoresistivity on 야fferent directions and a current leakage at elevated temperature, but poly-crystalline silicon has the possibility of controling resistivity using dopping ions, and operation at high temperature, which is grown on insulating layers. Each wafer has slightly different thicknesses that make difficult to obtain the precisely same thickness of a diaphragm. This paper deals with the fabrication process to make poly-crystalline silicon based pressure sensors which includes diaphragm thickness and wet-etching techniques for each layer. Diaphragms of the same thickness can be fabricated consisting of deposited layers by silicon bulk etching. HF etches silicon nitride, HNO$_3$+HF does poly -crystalline silicon at room temperature very fast. Whereas ethylenediamice based etchant is used to etch silicon at 11$0^{\circ}C$ slowly.

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Effect of Pore Structures of a Ti-49.5Ni (at%) Alloy on Bone Cell Adhesion (Ti-49.5Ni (at%)합금의 다공성 구조가 뼈 세포 흡착에 미치는 영향)

  • Im, Yeon-Min;Choi, Jung-Il;Khang, Dong-Woo;Nam, Tae-Hyun
    • Korean Journal of Materials Research
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    • v.22 no.2
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    • pp.66-70
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    • 2012
  • Ti-Ni alloys are widely used in numerous biomedical applications (e.g., orthodontics, cardiovascular science, orthopaedics) due to their distinctive thermomechanical and mechanical properties, such as the shape memory effect, superelasticity and low elastic modulus. In order to increase the biocompatibility of Ti-Ni alloys, many surface modification techniques, such as the sol-gel technique, plasma immersion ion implantation (PIII), laser surface melting, plasma spraying, and chemical vapor deposition, have been employed. In this study, a Ti-49.5Ni (at%) alloy was electrochemically etched in 1M $H_2SO_4$+ X (1.5, 2.0, 2.5) wt% HF electrolytes to modify the surface morphology. The morphology, element distribution, crystal structure, roughness and energy of the surface were investigated by scanning electron microscopy (SEM), energy-dispersive Xray spectrometry (EDS), X-ray diffractometry (XRD), atomic force microscopy (AFM) and contact angle analysis. Micro-sized pores were formed on the Ti-49.5Ni (at%) alloy surface by electrochemical etching with 1M $H_2SO_4$+ X (1.5, 2.0, 2.5) wt% HF. The volume fractions of the pores were increased by increasing the concentration of the HF electrolytes. Depending on the HF concentration, different pore sizes, heights, surface roughness levels, and surface energy levels were obtained. To investigate the osteoblast adhesion of the electrochemically etched Ti-49.5Ni (at%) alloy, a MTT test was performed. The degree of osteoblast adhesion was increased at a high concentration of HF-treated surface structures.

Etching properties of TaN/$HfO_2$ gate structure by using high density plasma (고밀도 플라즈마를 이용한 TaN/$HfO_2$ 게이트 구조의 식각 특성)

  • Kim, Gwan-Ha;Kim, Chang-Il;Jang, Myoung-Soo;Lee, Ju-Wook;Kim, Sang-Gi;Koo, Jin-Gun;Kang, Jin-Young
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2007.06a
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    • pp.158-159
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    • 2007
  • 반도체 소자의 공정에 있어서 device scaling으로 인한 게이트 산화막 대체 유전체 (high-k)의 공정 개발 확보 방안 필요하다. 본 논문에서는 $Cl_2$/Ar 유도 결합 플라즈마를 이용하여 $HfO_2$ 박막을 식각하였다. $Cl_2$(80 %)/Ar(20 %)의 가스비, 600 W의 RF 전력, -150 V의 직류 바이어스 전압, 20 sccm의 총 가스유랑, 15 mTorr의 압력에서 15.4 nm/min의 최대 식각률을 얻을 수 있었다. 식각 된 $HfO_2$ 박막 표면을 XPS 분석한 결과 Hf와 O는 Cl 라디칼과 반응을 하여 높은 휘발성을 보이지만 Hf-O의 안정된 결합으로 인하여 이온에 의한 스퍼터링 효과에 의해서 식각된다.

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