• 제목/요약/키워드: Low Energy Resonance

검색결과 163건 처리시간 0.025초

블레이드리스 풍력발전기의 토폴로지에 관한 비교·분석 (Comparison and Analysis for the Topology of Bladeless Wind Power Generator)

  • 민준혁;정성인
    • 한국인터넷방송통신학회논문지
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    • 제24권4호
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    • pp.147-154
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    • 2024
  • 본 연구는 기존 풍력 터빈의 한계와 문제점을 극복하기 위해 블레이드리스 풍력 발전을 위한 선형 발전기의 모델링 및 해석에 중점을 두고 있다. 블레이드리스 풍력 발전 시스템은 블레이드 풍력 발전 터빈에 비해 설치 및 유지관리에 필요한 토지 요구량이 낮다는 장점이 있다. 그러나 블레이드리스 풍력 발전을 위한 발전기에 관한 종합적인 연구는 아직까지 부족한 실정이다. 특히, 발전기의 토플로지에 관한 질문의 답변이 만족스럽지 않다. 연구의 목표는 원통형 블레이드리스 풍력발전기의 수평 및 수직 구조에 대해 비교 분석하는 것이다. 제안된 토플로지는 자기력을 이용해 2차원 등가 자기회로 네트워크 방식으로 해석한 후 유한요소법으로 비교 평가하였다. 최종적으로, 본 연구의 결과는 풍력 발전 시스템을 위한 새로운 발전기 구조에 대한 상세한 정보와 블레이드리스 풍력 발전 특성에 대한 통찰을 제공할 것이다.

Contribution of a Low-Barrier Hydrogen Bond to Catalysis Is Not Significant in Ketosteroid Isomerase

  • Jang, Do Soo;Choi, Gildon;Cha, Hyung Jin;Shin, Sejeong;Hong, Bee Hak;Lee, Hyeong Ju;Lee, Hee Cheon;Choi, Kwan Yong
    • Molecules and Cells
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    • 제38권5호
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    • pp.409-415
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    • 2015
  • Low-barrier hydrogen bonds (LBHBs) have been proposed to have important influences on the enormous reaction rate increases achieved by many enzymes. ${\Delta}^5$-3-ketosteroi isomerase (KSI) catalyzes the allylic isomerization of ${\Delta}^5$-3-ketosteroid to its conjugated ${\Delta}^4$-isomers at a rate that approache the diffusion limit. Tyr14, a catalytic residue of KSI, has been hypothesized to form an LBHB with the oxyanion of a dienolate steroid intermediate generated during the catalysis. The unusual chemical shift of a proton at 16.8 ppm in the nuclear magnetic resonance spectrum has been attributed to an LBHB between Tyr14 $O{\eta}$ and C3-O of equilenin an intermediate analogue, in the active site of D38N KSI. This shift in the spectrum was not observed in Y30F/Y55F/D38N and Y30F/Y55F/Y115F/D38N mutant KSIs when each mutant was complexed with equilenin, suggesting that Tyr14 could not form LBHB with the intermediate analogue in these mutant KSIs. The crystal structure of Y30F/Y55F/Y115F/D38N-equilenin complex revealed that the distance between Tyr14 $O{\eta}$ and C3-O of the bound steroi was within a direct hydrogen bond. The conversion of LBHB to an ordinary hydrogen bond in the mutant KSI reduced the binding affinity for the steroid inhibitors by a factor of 8.1-11. In addition, the absence of LBHB reduced the catalytic activity by only a factor of 1.7-2. These results suggest that the amount of stabilization energy of the reaction intermediate provided by LBHB is small compared with that provided by an ordinary hydrogen bond in KSI.

4개 변전소시설 부지 인근관측소의 지반증폭 특성 및 파형에너지 수준 비교 연구 (A Comparison Study of the Site Amplification Characteristics and Seismic Wave Energy Levels at the Sites near Four Electric Substations)

  • 유성화;김준경;위성훈
    • 한국지구과학회지
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    • 제37권1호
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    • pp.40-51
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    • 2016
  • 실제 국내에서 관측된 가속도를 이용한 스펙트럼 값이 내진설계기준보다 상대적으로 크게 나타나는 경향을 보이며, 특히 고진동수 구간에서 국내 내진설계 기준이 국내 고유의 지반증폭 특성을 제대로 반영하지 못하고 있어 문제점이 많다고 지적되어 왔다. 지반증폭 특성을 분석할 때 여러 가지 방법이 제시되어 왔으며 본 연구는 현장에서 자주 적용되고 있는 지반진동의 수평/수직 스펙트럼 비율을 이용하는 방법을 적용하였다. 이 방법은 S파 및 레일리파를 이용하는 것으로부터 출발하였으나, 최근 Coda파 및 배경잡음 등에 확대 적용되어 지반의 동적인 증폭특성 연구에 많이 이용되고 있다. 제한된 연구 기간 동안 4개 변전소시설 관측소 각각 2개 지점(노두 및 시추공)에서 운영되었고 본 연구는 4개 관측소의 노두에서 동시에 관측된 3개 중규모 지진의 가속도 지반진동(S파, Coda파 및 배경잡음)을 이용하여 지반증폭을 분석하였다. 분석결과는 4개 관측소 각각에 대해 기존 연구결과인 시추공 지반증폭 특성과 상호 비교하였다. 또한 각각 관측소 및 지점에서 지반의 우월진동수를 이용하여 각각 지반에 대한 등급분류도 시도하였다. 각각의 지진관측소마다 저진동수 및 고진동수 특성, 관측소 고유의 우월진동수가 서로 상이하여 관측소 고유의 증폭특성을 보여주었다. 대다수 관측소는 S파, Coda파 및 배경잡음 에너지를 분석한 결과와 많은 부분이 유사함을 보여 주었다. 물론 본 연구로부터 도출된 결과를 다른 방법에 적용하여 얻어진 결과와 비교한다면 지반의 동적 특성 및 지반분류 연구에 많은 정보를 제시할 수 있다고 판단된다.

REPLACEMENT OF A PHOTOMULTIPLIER TUBE IN A 2-INCH THALLIUM-DOPED SODIUM IODIDE GAMMA SPECTROMETER WITH SILICON PHOTOMULTIPLIERS AND A LIGHT GUIDE

  • KIM, CHANKYU;KIM, HYOUNGTAEK;KIM, JONGYUL;LEE, CHAEHUN;YOO, HYUNJUN;KANG, DONG UK;CHO, MINSIK;KIM, MYUNG SOO;LEE, DAEHEE;KIM, YEWON;LIM, KYUNG TAEK;YANG, SHIYOUNG;CHO, GYUSEONG
    • Nuclear Engineering and Technology
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    • 제47권4호
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    • pp.479-487
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    • 2015
  • The thallium-doped sodium iodide [NaI(Tl)] scintillation detector is preferred as a gamma spectrometer in many fields because of its general advantages. A silicon photomultiplier (SiPM) has recently been developed and its application area has been expanded as an alternative to photomultiplier tubes (PMTs). It has merits such as a low operating voltage, compact size, cheap production cost, and magnetic resonance compatibility. In this study, an array of SiPMs is used to develop an NaI(Tl) gamma spectrometer. To maintain detection efficiency, a commercial NaI(Tl) $2^{\prime}{\times}2^{\prime}$ scintillator is used, and a light guide is used for the transport and collection of generated photons from the scintillator to the SiPMs without loss. The test light guides were fabricated with polymethyl methacrylate and reflective materials. The gamma spectrometer systems were set up and included light guides. Through a series of measurements, the characteristics of the light guides and the proposed gamma spectrometer were evaluated. Simulation of the light collection was accomplished using the DETECT 97 code (A. Levin, E. Hoskinson, and C. Moison, University of Michigan, USA) to analyze the measurement results. The system, which included SiPMs and the light guide, achieved 14.11% full width at half maximum energy resolution at 662 keV.

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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High Quality Nano Structured Single Gas Barrier Layer by Neutral Beam Assisted Sputtering (NBAS) Process

  • Jang, Yun-Sung;Lee, You-Jong;Hong, Mun-Pyo
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.251-252
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    • 2012
  • Recently, the growing interest in organic microelectronic devices including OLEDs has led to an increasing amount of research into their many potential applications in the area of flexible electronic devices based on plastic substrates. However, these organic devices require a gas barrier coating to prevent the permeation of water and oxygen because organic materials are highly susceptible to water and oxygen. In particular, high efficiency OLEDs require an extremely low Water Vapor Transition Rate (WVTR) of $1{\times}10^{-6}g/m^2$/day. The Key factor in high quality inorganic gas barrier formation for achieving the very low WVTR required ($1{\times}10^{-6}g/m^2$/day) is the suppression of defect sites and gas diffusion pathways between grain boundaries. In this study, we developed an $Al_2O_3$ nano-crystal structure single gas barrier layer using a Neutral Beam Assisted Sputtering (NBAS) process. The NBAS system is based on the conventional RF magnetron sputtering and neutral beam source. The neutral beam source consists of an electron cyclotron Resonance (ECR) plasma source and metal reflector. The Ar+ ions in the ECR plasma are accelerated in the plasma sheath between the plasma and reflector, which are then neutralized by Auger neutralization. The neutral beam energies were possible to estimate indirectly through previous experiments and binary collision model. The accelerating potential is the sum of the plasma potential and reflector bias. In previous experiments, while adjusting the reflector bias, changes in the plasma density and the plasma potential were not observed. The neutral beam energy is controlled by the metal reflector bias. The NBAS process can continuously change crystalline structures from an amorphous phase to nano-crystal phase of various grain sizes within a single inorganic thin film. These NBAS process effects can lead to the formation of a nano-crystal structure barrier layer which effectively limits gas diffusion through the pathways between grain boundaries. Our results verify the nano-crystal structure of the NBAS processed $Al_2O_3$ single gas barrier layer through dielectric constant measurement, break down field measurement, and TEM analysis. Finally, the WVTR of $Al_2O_3$ nano-crystal structure single gas barrier layer was measured to be under $5{\times}10^{-6}g/m^2$/day therefore we can confirm that NBAS processed $Al_2O_3$ nano-crystal structure single gas barrier layer is suitable for OLED application.

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PSL, TL 및 ESR 분석에 의한 감마선 조사 한약재의 검지 특성 (Detection Characteristics of Gamma-Irradiated Korean Medicinal Herbs by Using PSL, TL, and ESR)

  • 양희선;박용대;진창현;최대성;정형욱;변명우;정일윤
    • 한국식품영양과학회지
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    • 제37권11호
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    • pp.1529-1533
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    • 2008
  • 한약재의 방사선 조사여부를 확인하기 위해 도라지와 오가피에 $0{\sim}10\;kGy$의 감마선을 조사하고 PSL, TL 및 ERS 특성을 비교 검토하였다. PSL을 측정한 결과 비 조사된 한약재에서 한계치($T_1$)인 700보다 낮은 photon count 값을 보이면서 negative로 판정되었고, 0.15 kGy 이상 조사구는 한계치($T_2$)인 5,000보다 높은 photon count 값을 나타내면서 positive로 표시되어 방사선 조사된 것을 확인할 수 있었다. 또한 시료로부터 mineral을 분리하여 TL의 glow curve와 TL ratio($TL_1/TL_2$)를 확인하였다. 방사선 조사가 되지 않은 도라지와 오가피는 TL ratio가 0.007 이하의 값을 나타내었으며, 조사구(1.0 kGy 이상)에서는 0.314 이상의 TL ratio를 나타내었다. 도라지와 오가피는 본 연구에서 설정한 TL ratio의 한계치 0.1보다 높은 수치를 나타내어 방사선 조사여부 확인이 가능하였다. ESR 측정을 통한 방사선 조사 한약재 검지에서는 cellulose 라디칼에서 유래된 특이한 라디칼 신호를 보여주었고, 이는 도라지 시료에서 더욱 뚜렷하게 확인할 수 있었다. 이상의 결과에서 PSL, TL 및 ESR 분석은 도라지와 오가피의 방사선 조사 여부 확인에 적합한 방법임을 확인할 수 있었다

공기조화, 냉동 분야의 최근 연구 동향 -2004년 및 2005년 학회지 논문에 대한 종합적 고찰- (Recent Progress in Air Conditioning and Refrigeration Research - A Review of Papers Published in the Korean Journal of Air-Conditioning and Refrigeration Engineering in 2004 and 2005 -)

  • 최영돈;강용태;김내현;김만회;박경근;박병윤;박진철;홍희기
    • 설비공학논문집
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    • 제19권1호
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    • pp.94-131
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    • 2007
  • A review on the papers published in the Korean Journal of Air-Conditioning and Refrigerating Engineering in 2004 and 2005 has been done. Focus has been put on current status of research in the aspect of heating, cooling, air-conditioning, ventilation, sanitation and building environment. The conclusions are as follows. (1) Most of fundamental studies on fluid flow were related with heat transportation of facilities. Drop formation and rivulet flow on solid surfaces were interesting topics related with condensation augmentation. Research on micro environment considering flow, heat, humidity was also interesting for comfortable living environment. It can be extended considering biological aspects. Development of fans and blowers of high performance and low noise were continuing topics. Well developed CFD and flow visualization(PIV, PTV and LDV methods) technologies were widely applied for developing facilities and their systems. (2) The research trends of the previous two yews are surveyed as groups of natural convection, forced convection, electronic cooling, heat transfer enhancement, frosting and defrosting, thermal properties, etc. New research topics introduced include natural convection heat transfer enhancement using nanofluid, supercritical cooling performance or oil miscibility of $CO_2$, enthalpy heat exchanger for heat recovery, heat transfer enhancement in a plate heat exchanger using fluid resonance. (3) The literature for the last two years($2004{\sim}2005$) is reviewed in the areas of heat pump, ice and water storage, cycle analysis and reused energy including geothermal, solar and unused energy). The research on cycle analysis and experiments for $CO_2$ was extensively carried out to replace the Ozone depleting and global warming refrigerants such as HFC and HCFC refrigerants. From the year of 2005, the Gas Engine Heat Pump(GHP) has been paid attention from the viewpoint of the gas cooling application. The heat pipe was focused on the performance improvement by the parametric analysis and the heat recovery applications. The storage systems were studied on the performance enhancement of the storage tank and cost analysis for heating and cooling applications. In the area of unused energy, the hybrid systems were extensively introduced and the life cycle cost analysis(LCCA) for the unused energy systems was also intensively carried out. (4) Recent studies of various refrigeration and air-conditioning systems have focused on the system performance and efficiency enhancement. Heat transfer characteristics during evaporation and condensation are investigated for several tube shapes and of alternative refrigerants including carbon dioxide. Efficiency of various compressors and expansion devices are also dealt with for better modeling and, in particular, performance improvement. Thermoelectric module and cooling systems are analyzed theoretically and experimentally. (5) According to the review of recent studies on ventilation systems, an appropriate ventilation systems including machenical and natural are required to satisfied the level of IAQ. Also, an recent studies on air-conditioning and absorption refrigeration systems, it has mainly focused on distribution and dehumidification of indoor air to improve the performance were carried out. (6) Based on a review of recent studies on indoor environment and building service systems, it is noticed that research issues have mainly focused on optimal thermal comfort, improvement of indoor air Quality and many innovative systems such as air-barrier type perimeter-less system with UFAC, radiant floor heating and cooling system and etc. New approaches are highlighted for improving indoor environmental condition as well as minimizing energy consumption, various activities of building control and operation strategy and energy performance analysis for economic evaluation.

충격 반향 기법을 이용한 숏크리트 배면 접착 상태 평가에 관한 수치해석적 연구 (Evaluation of bonding state of tunnel shotcrete using impact-echo method - numerical analysis)

  • 송기일;조계춘;장석부
    • 한국터널지하공간학회 논문집
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    • 제10권2호
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    • pp.105-118
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    • 2008
  • 숏크리트는 터널에서 사용되는 중요한 지보재이다. 숏크리트와 암반의 접착상태는 터널의 안정성 및 사용성에 큰 영향을 끼치는 중요한 평가 요소이다. NATM공법을 이용한 터널 굴착시 굴착면 빛 벤치부에서 발파에 의해 숏크리트가 부착력을 잃고 암반으로부터 탈락되거나 공동이 형성되는 경우 숏크리트 자체의 파괴뿐만 아니라 터널의 전체적인 안정에도 악영향을 미친다. 숏크리트의 접착상태는 완전 접착, 접착력 상실, 그리고 공동으로 분류할 수 있다. 본 연구에서는 비파괴 시험인 충격반향기법(Impact-Echo)을 이용하여 숏크기트와 암반의 접착상태를 평가하고자 하였다. 범용 유한요소 해석 프로그램인 ABAQUS를 이용하여 충격반향시험에 대한 수치해석을 수행하였다. 수치해석으로부터 획득된 신호를 시간영역, 주파수 영역 및 시간-주파수 영역에서 각각 해석하여 숏크리트와 암반의 접착상태에 따른 신호특성을 분석하였다. 분석결과 능동적 신호 처리 기법인 Short-Time Fourier Transform(STFT)을 이용하여 숏크리트 배면의 접착상태를 효과적으로 예측할 수 있었다. 숏크리트 배면의 접착상태가 불량할수록 시간영역 신호의 최대 진폭 이후 첫 진폭이 커지며, 주파수 영역에서 최대 에너지가 커진다. 또한 뚜렷한 공진 주파수가 나타나므로 숏크리트의 두께의 역산이 가능해진다. 시간-주파수 영역에서 윤곽선은 시간축에 평행한 형상을 나타낸다. 또한 완전 접착조건에서 지반 종류에 따른 신호특성도 분석하였다. 지반조건이 불량할수록 시간-주파수 영역에서 시간축과 평행한 윤곽선의 길이가 길어지며 그 주파수 대역은 10 kHz 이하의 저주파수 영역에서 나타난다.

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ESR, ESEM을 이용한 이온 교환된 MoH-SAPO-34에 대한 Mo의 화학종, 위치 및 흡착상호작용에 관한 연구 (Study on Mo(V) Species, Location and Adsorbates Interactions in MoH-SAPO-34 by Employing ESR and Electron Spin-Echo Modulation Spectroscopies)

  • 백건호;장창기;류창국;조영환;소현수
    • 대한화학회지
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    • 제46권1호
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    • pp.26-36
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    • 2002
  • $MoO_3$와 H-SAPO-34의 고체상 반응은 상자기성의 Mo(V) 화학종을 띤다. 탈수하면 Mo(V) 화학 종이 약하게 나타나지만 계속적으로 활성화 시키면 ESR로 규명할 수 있는 $Mo(V)_{5c}$$Mo(V)_{6c}$와 같은 Mo(V) 화학종이 생성된다. ESR과 ESEM 자료들은 $(MoO_2)^+$$(MoO)^{3+}$ 같은 옥소-몰리브덴 화학 종을 보여준다. $(MoO_2)^+$ 화학 종이 다음과 같이 더 합리적인 것 같이 보여진다. H-SAPO-34는 낮은 골격전하를 갖기 때문에 높은 양전하를 갖는 $(MoO)^{3+}$는 쉽게 안정화 되지 못한다. 소성된 H-SAPO-34와 도데카몰리브덴 규산 용액 사이의 용액 상태 반응은 단지 $MoO^{2+}$ 화학 종만을 발생한다. 마름모형 ESR 신호는 $D_2O$, $CD_3OH$, $CH_3CH_2OD$$ND_3$를 흡착할 때 관측되었다. Mo(V) 화학 종의 배위구조와 위치는 트리 펄스 전자 스핀반향 자료로 측정하였다. MoH-SAPO-34에 메탄올, 에틸렌 암모니아와 물이 흡착될 때 3분자, 1분자, 1분자와 1분자가 $(MoO_2)^+$에 각각 직접 배위하였다.