• 제목/요약/키워드: Silver Catalyst

검색결과 47건 처리시간 0.025초

Chemical Active Liquid Membranes in Inorganic Supports for Metal Ion Separations

  • Yi, Jongheop
    • 한국막학회:학술대회논문집
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    • 한국막학회 1994년도 추계 총회 및 학술발표회
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    • pp.8-11
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    • 1994
  • Disposal of hazardous ions in the aqueous streams is a significant industrial waste problem.. Waste streams from electronics, electroplating, and photographic industries contain metal ions such as copper, nickel, zinc, chromium(IV), cadmium, aluminum, silver, and gold, amongst others in various aqueous solutions such as sulfates, chlorides, fluorocarbons, and cyanides. Typical plating solutions having similar compositions are listed in Table 1. Spent process streams in catalyst manufacturing facilities also contain precious metals such as Ag, Pt, and Pd. Developing an effective recovery process of these metal ions for reuse is important.

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Fabrication and Catalysis of $SiO_2$-Coated Ag@Au Nanoboxes

  • 이재원;장두전
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.588-588
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    • 2013
  • Nanoscale noble-metals have attracted enormous attention from researchers in various fields of study because of their unusual optical properties as well as novel chemical properties. They have possible uses in diverse applications such as devices, transistors, optoelectronics, information storages, and energy converters. It is well-known that nanoparticles of noble-metals such as silver and gold show strong absorption bands in the visible region due to their surface-plasmon oscillation modes of conductive electrons. Silver nanocubes stand out from various types of Silver nanostructures (e.g., spheres, rods, bars, belts, and wires) due to their superior performance in a range of applications involvinglocalized surface plasmon resonance, surface-enhanced Raman scattering, and biosensing. In addition, extensive efforts have been devoted to the investigation of Gold-based nanocomposites to achieve high catalytic performances and utilization efficiencies. Furthermore, as the catalytic reactivity of Silver nanostructures depends highly on their morphology, hollow Gold nanoparticles having void interiors may offer additional catalytic advantages due to their increased surface areas. Especially, hollow nanospheres possess structurally tunable features such as shell thickness, interior cavity size, and chemical composition, leading to relatively high surface areas, low densities, and reduced costs compared with their solid counterparts. Thus, hollow-structured noblemetal nanoparticles can be applied to nanometer-sized chemical reactors, efficient catalysts, energy-storage media, and small containers to encapsulate multi-functional active materials. Silver nanocubes dispersed in water have been transformed into Ag@Au nanoboxes, which show highly enhanced catalytic properties, by adding $HAuCl_4$. By using this concept, $SiO_2$-coated Ag@Au nanoboxes have been synthesized via galvanic replacement of $SiO_2$-coated Ag nanocubes. They have lower catalytic ability but more stability than Ag@Au nanoboxes do. Thus, they could be recycled. $SiO_2$-coated Ag@Au nanoboxes have been found to catalyze the degradation of 4-nitrophenol efficiently in the presence of $NaBH_4$. By changing the amount of the added noble metal salt to control the molar ratio Au to Ag, we could tune the catalytic properties of the nanostructures in the reduction of the dyes. The catalytic ability of $SiO_2$-coated Ag@Au nanoboxes has been found to be much more efficient than $SiO_2$-coated Ag nanocubes. Catalytic performances were affected noteworthily by the metals, sizes, and shapes of noble-metal nanostructures.

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Palladium 촉매를 이용한 5-Norbornene-2-carboxylic Acid Esters의 부가 중합: 단량체의 합성, 단량체의 Stereochemistry(Endo-, Exo-이성질체)가 고분자의 중합 거동에 미치는 영향 (Addition Polymerization of 5-Norbornene-2-carboxylic Acid Esters Using Palladium Catalyst System: Synthesis of Monomers, Effect of Their Stereochemistry on Polymerization Behavior)

  • 정해강;심형섭;전승호;김지흥;남성우;전붕수;김영준
    • 폴리머
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    • 제39권3호
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    • pp.487-492
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    • 2015
  • Palladium(II) 촉매를 이용한 norobornene carboxylic acid estsers의 중합 시 단량체의 알킬 작용기의 종류, endo/exo 비율이 촉매의 활성도 및 중합 특성에 미치는 영향을 조사하였다. Norbornene esters 단량체는 5-norborene-2-carboxylic acid와 다양한 알코올을 반응시켜 합성하였다. 중합 촉매로는 di-$\mu$-chloro-bis(-methoxybicyclo[2,2,1]-hept-2-ene)palladium(II)(DCBMP)를 합성하여 사용하였고, 짝음이온으로 실버 헥사플루오로안티모네이트($AgSbF_6$)를 이용하였다. 고분자의 분석을 위해 젤 투과 크로마토그래피(gel permeation chromatography, GPC), 열 중량 분석법(thermogravimetric analysis, TGA), 시차주사 열량측정법(differential scanning calorimetry, DSC), 화학구조 분석을 위해 $^1H$ NMR spectroscopy를 이용하였다. 분자량 분석 결과 모든 작용기의 경우 endo-이성체의 비율이 exo-이성체의 비율보다 높을 경우 촉매의 구조적 방해로 인하여 반응성이 감소됨을 보였다. 또한 단량체와 촉매의 비율이 중합 거동에 미치는 영향을 조사하기 위해 단량체와 촉매의 몰비율을 100:1, 200:1, 300:1로 변화시켜 실험을 진행하였으며, 이 때 exo-norbornene carboxylic acid octyl ester의 경우 300:1 촉매비에서 필름형성이 가능한 높은 분자량($M_n=27500g/mol$)의 고분자를 합성할 수 있었다.

Poly(ethylenimine)-Stabilized Hollow Gold-Silver Bimetallic Nanoparticles: Fabrication and Catalytic Application

  • Shin, Kuan-Soo;Kim, Ji-Hoon;Kim, In-Hyun;Kim, Kwan
    • Bulletin of the Korean Chemical Society
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    • 제33권3호
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    • pp.906-910
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    • 2012
  • Hollow gold-silver bimetallic nanoparticles (AuAg-HNPs) have been synthesized and their optical and structural properties were characterized. Initially Ag nanoparticles (Ag-NPs) were prepared using poly(ethylenimine) (PEI) as a reducing and a stabilizing agent simultaneously. AuAg-HNPs could then be synthesized via galvanic replacement reaction in a PEI aqueous solution by reacting sacrificial Ag template with a precursor compound of Au, i.e., $HAuCl_4$. Due to the presence of abundant amine functional groups in PEI, which could act as the dissolving ligand for AgCl, the precipitation problem of $Ag^+$ in the presence of Cl from $HAuCl_4$ salt was avoided. On this basis, the relatively high concentrations of $HAuCl_4$ and PEI-stabilized Ag nanoparticles could be used for the fabrication of AuAg-HNPs. Because of their increased surface areas and reduced densities, the AuAg-HNPs were expected and confirmed to outperform their solid counterparts in applications such as catalysis for the reduction of 4-nitrophenol in the presence of $NaBH_4$.

Structuring of Bulk Silicon Particles for Lithium-Ion Battery Applications

  • Bang, Byoung-Man;Kim, Hyun-Jung;Park, Soo-Jin
    • Journal of Electrochemical Science and Technology
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    • 제2권3호
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    • pp.157-162
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    • 2011
  • We report a simple route for synthesizing multi-dimensional structured silicon anode materials from commercially available bulk silicon powders via metal-assisted chemical etching process. In the first step, silver catalyst was deposited onto the surface of bulk silicon via a galvanic displacement reaction. Next, the silver-decorated silicon particles were chemically etched in a mixture of hydrofluoric acid and hydrogen peroxide to make multi-dimensional silicon consisting of one-dimensional silicon nanowires and micro-scale silicon cores. As-synthesized silicon particles were coated with a carbon via thermal decomposition of acetylene gas. The carbon-coated multi-dimensional silicon anodes exhibited excellent electrochemical properties, including a high specific capacity (1800 mAh/g), a stable cycling retention (cycling retention of 89% after 20 cycles), and a high rate capability (71% at 3 C rate, compared to 0.1 C rate). This process is a simple and mass-productive (yield of 40-50%), thus opens up an effective route to make a high-performance silicon anode materials for lithiumion batteries.

팔라듐-은 막반응기를 이용한 메탄의 부분산화반응 (Partial Oxidation of Methane in Palladium-silver Alloy Membrane Reactor)

  • 최태호;김광제;문상진;서정철;백영순
    • 공업화학
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    • 제16권5호
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    • pp.641-647
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    • 2005
  • 메탄의 부분산화반응은 수소 제조의 중요한 반응 중의 하나이다. 무전해 도금방법에 의해 제조된 팔라듐-은 막을 막반응기(membrane reactor)로서 메탄의 부분산화반응에 적용하여 반응온도, $O_2/CH_4$ 몰비, $CH_4$ 공급속도, $N_2$ 운반 가스 흐름속도 등의 변화에 따라 실험을 수행하였다. 막반응기의 메탄 전환율은 알루미나에 담지된 니켈 촉매를 사용하는 반응조건하에서 $350{\sim}730^{\circ}C$의 반응온도에 따라 증가하는 경향을 보였으며, 특히 $730^{\circ}C$$O_2/CH_4$ 몰비 0.5에서 메탄 전환율과 CO 선택도가 가장 높았다. 막반응기의 메탄 전환율은 전통적인 관형반응기와 비교한 결과 반응조건에 따라 10~40% 정도 높았다.

$K_2MnO_4/Al_2O_3$촉매를 이용한 과산화수소 기화기의 성능평가 (Performance Evaluation of Hydrogen Peroxide Vaporizer with $K_2MnO_4/Al_2O_3$ Catalyst)

  • 랑성민;안성용;권혁모;권세진
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2005년도 제25회 추계학술대회논문집
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    • pp.329-334
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    • 2005
  • 고농도 과산화수소는 별도의 산화제가 필요치 않은 단일추진제로써 상온에서 액상인 장점이 있어 다양한 장치의 추진제로 이용되고 있다. 본 연구에서는 고온촉매인 $La_{0.8}Sr_{0.2}CoO_3(LSC)$촉매의 저온 시동성능의 보완을 위해 은, 백금, LSC, 망간계열촉매를 후보군으로 하여 과산화수소 가스발생기의 기화기 촉매를 실험적으로 선정하였다. 또한 이 때 발견된 망간계열촉매의 접착문제를 해결하고자 알루미나 졸-겔법을 이용한 촉매 합성법과 코팅 방법을 개발하였다. 그리고 코팅된 $K_2MnO_4/Al_2O_3$촉매와 LSC와의 드롭-테스트를 통해 상온에서의 반응성과 응답특성을 비교하였고, 가스발생기를 이용한 반응실험을 통해 설계유량에 적합한 기화기의 길이를 측정하였다.

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QDs를 이용한 키토산-골드와 키토산-실버 나노약물전달체 제조 (Preparation of Chitosan-Gold and Chitosan-Silver Nanodrug Carrier Using QDs)

  • 이용춘;강익중
    • Korean Chemical Engineering Research
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    • 제54권2호
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    • pp.200-205
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    • 2016
  • 본 연구에서는 최근 많은 분야에서 응용되고 있는 형광물질인 양자점을 생명고분자인 키토산과 반응시켜 얻은 나노입자와 금속성 골드 나노입자, 그리고 실버 나노입자로 외부를 코팅하여 나노약물 전달체를 얻을 수 있었다. 키토산은 생체고분자로써 무독성이며 인체적합성 고분자이다. 양자점은 2~10 nm의 크기를 가지는 반도체성 나노입자이다. 양자점은 생명분자나 생명단백질의 비슷한 크기를 갖으며, 그 크기에 따라 알맞은 가시광선 영역의 빛을 발산할 수 있도록 조절 가능하므로, 세포 바이오 마킹, 약물전달체 등에 효과적으로 쓰일 수 있다. 따라서 키토산 나노입자 말단의 아민기와 양자점의 카르복실기가 아미드결합을 형성하여 반응하게 조절하였다. 양자점의 독성을 완화시키기 위해 코팅재료로 사용된 금속성 나노입자 중 골드나노입자는 약 5~10 nm의 크기를 가지고 있고, 인체에 무해하고 음전하를 띄어서 양전하를 띈 고분자와 쉽게 복합체를 형성할 수 있는 장점이 있다. 향균성으로 잘 알려진 실버나노입자는 약 5 nm의 크기를 가지고 있고, 은 나노입자로 코팅을 하면 미생물 감염을 미리 방지 할 수 있는 장점을 가지고 있다. 본 연구에서 만들어진 QDs-키토산-골드 & QDs-키토산-실버 나노쉘의 입자크기는 약 100 nm의 크기를 갖었으며, 목적하는 바 형광특성을 잘 보여주고 있었다. 이러한 입자들은 정전기적 상호작용에 의하여 각각 골드나노입자와 실버나노입자로 코팅되어 나노 약물전달체로 완성할 수 있었다.

모놀리스형 은촉매상에서 에틸렌선택산화반응의 속도론적 고찰 (Kinetics and Mechanism of the Selective Oxidation of Ethylene for Ethylene Oxide over Monolithic Silver Catalyst)

  • 박노범;김상채;선우창신;유의연
    • 공업화학
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    • 제2권2호
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    • pp.165-174
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    • 1991
  • 고정층상압유통식 미분형반응기를 이용하여 모놀리스형 은촉매상에서 에틸렌의 선택산화반응 기구 및 속도식에 관하여 연구하였다. 반응온도 $225^{\circ}C$에서 $300^{\circ}C$까지와 전화율 1.2 %에서 7.5 %까지 범위에서 에틸렌과 산소의 분압을 변화시켜 가면서 산화에틸렌 및 이산화탄소의 생성반응은 Langmuir-Hinshelwood 형 반응기구를 따르며, 은촉매 표면의 활성점에 흡착된 산소원자와 흡착한 에틸렌이 반응하여 산화에틸렌과 이산화탄소가 생성되는 것으로 나타났고, 이들의 생성반응속도식은 각각 다음과 같이 나타낼 수 있었다. $R_{EO}={\frac{k_1K_0{^{1/2}}K_EK_SP_{02}{^{3/2}}P_E}{(1+{\sqrt{K_0P_{02}}}+K_EP_E+K_PP_P)^2(1+{\sqrt{K_SP_{02}})^2}}$ $R_C={\frac{k_2K_0{^3}K_EK_S{^{7/2}}P_{02}{^{13/2}}P_E}{(1+{\sqrt{K_0P_{02}}}+K_EP_E+K_PP_P)^7(1+{\sqrt{K_SP_{02}})^7}}$ 또한 각 온도에 따른 표면반응속도상수와 반응물들의 흡착평형상수를 결정하여 이로부터 표면반응 활성화에너지를 구하였는 바, 산화에틸렌 생성반응의 활성화에너지는 12.2 Kcal/mol 이고 이산화탄소와 물이 생성되는 반응의 활성화에너지는 17.85 Kcal/mol이었다.

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Silver nanowires and nanodendrites synthesized by plasma discharge in solution for the catalytic oxygen reduction in alkaline media

  • 김회근;송면규;김동우;이상율
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2018년도 춘계학술대회 논문집
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    • pp.62-62
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    • 2018
  • Pt is still considered as one of the most active electrocatalysts for ORR in alkaline fuel cells. However, the high cost and scarcity of Pt hamper the widespread commercialization of fuel cells. As a strong candidate for the replacement of Pt catalyst, silver (Ag) has been extensively studied due to its high activity, abundance, and low cost. Ag is more stable than Pt in the pH range of 8~14 as the equilibrium potential of Ag/Ag+ being ${\approx}200mV$ higher than that of Pt/PtO. However, Ag is the overall catalytic activity of Ag for oxygen reduction reaction(ORR) is still not comparable to Pt catalyst since the surface Ag atoms are approximately 10 times less active than Pt atoms. Therefore, further enhancement in the ORR activity of Ag catalysts is necessary to be competitive with current cutting-edge Pt-based catalysts. We demonstrate the architectural design of Ag catalysts, synthesized using plasma discharge in liquid phase, for enhanced ORR kinetics in alkaline media. An attractive feature of this work is that the plasma status controlled via electric-field could form the Ag nanowires or dendrites without any chemical agents. The plasma reactor was made of a Teflon vessel with an inner diameter of 80 mm and a height of 80 mm, where a pair of tungsten(W) electrodes with a diameter of 2 mm was placed horizontally. The stock solutions were made by dissolving the 5-mM AgNO3 in DI water. For the synthesis of Agnanowires, the electricfield of 3.6kVcm-1 in a 200-ml AgNO3 aqueous solution was applied across the electrodes using a bipolar pulsed power supply(Kurita, Seisakusyo Co. Ltd). The repetition rate and pulse width were fixed at 30kHz and 2.0 us, respectively. The plasma discharge was carried out for a fixed reaction time of 60 min. In case of Ag nanodendrites, the electric field of 32kVcm-1 in a 200-ml AgNO3 aqueous solution was applied and other conditions were identical to the plasma discharge in water in terms of electrode configuration, repetition rate and discharge time. Using SEM and STEM, morphology of Ag nanowires and dendrites were investigated. With 3.6 kV/cm, Ag nanowire was obtained, while Ag dendrite was constructed with 32 kV/cm. The average diameter and legth of Ag nanowireses were 50 nm and 3.5 um, and thoes values of Ag dendrites were 40 nm and 3.0 um. As a results of XPS analysis, the surface defects in the Ag nanowires facilitated O2 incorporation into the surface region via the interaction between the oxygen and the electron cloud of the adjacent Ag atoms. The catalytic activity of Ag for oxygen reduction reaction(ORR) showed that the catalytic ORR activity of Ag nanowires are much better than Ag nanodendrites, and electron transfer number of Ag nanowires is similar to that of Pt (${\approx}4$).

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