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991.
Manel Guerrero-Zapata Ruken Zilan José M. Barceló-Ordinas Kemal Bicakci Bulent Tavli 《Telecommunication Systems》2010,45(1):77-91
This is a position paper on our views on security aspects of Wireless Multimedia Sensor Networks (Secure WMSNs). It is meant
to serve as a brief survey. But, more importantly, it gives a perspective on how we foresee the future of this research area,
its main challenges, and its future trends. We believe that this paper will spur new discussions and research ideas among
the researchers from both the industry and the academic world. 相似文献
992.
In this paper a realistic directional channel model that is an extension of the COST 273 channel model is presented. The model uses a cluster of scatterers and visibility region generation based strategy with increased realism, due to the introduction of terrain and clutter information. New approaches for path-loss prediction and line of sight modeling are considered, affecting the cluster path gain model implementation. The new model was implemented using terrain, clutter, street and user mobility information for the city of Lisbon, Portugal. Some of the model’s outputs are presented, mainly path loss and small/large-scale fading statistics. 相似文献
993.
Ligand‐Free Synthesis of Aluminum‐Doped Zinc Oxide Nanocrystals and their Use as Optical Spacers in Color‐Tuned Highly Efficient Organic Solar Cells 下载免费PDF全文
Meriem Gaceur Sadok Ben Dkhil David Duché Fatima Bencheikh Jean‐Jacques Simon Ludovic Escoubas Mahdi Mansour Antonio Guerrero Germà Garcia‐Belmonte Xianjie Liu Mats Fahlman Walid Dachraoui Abdou Karim Diallo Christine Videlot‐Ackermann Olivier Margeat Jörg Ackermann 《Advanced functional materials》2016,26(2):243-253
The color of polymer solar cells using an opaque electrode is given by the reflected light, which depends on the composition and thickness of each layer of the device. Metal‐oxide‐based optical spacers are intensively studied in polymer solar cells aiming to optimize the light absorption. However, the low conductivity of materials such as ZnO and TiO2 limits the thickness of such optical spacers to tenths of nanometers. A novel synthesis route of cluster‐free Al‐doped ZnO (AZO) nanocrystals (NCs) is presented for solution processing of highly conductive layers without the need of temperature annealing, including thick optical spacers on top of polymer blends. The processing of 80 nm thick optical spacers based on AZO nanocrystal solutions on top of 200 nm thick polymer blend layer is demonstrated leading to improved photocurrent density of 17% compared to solar cells using standard active layers of 90 nm in combination with thin ZnO‐based optical spacers. These AZO NCs also open new opportunities for the processing of high‐efficiency color tuned solar cells. For the first time, it is shown that applying solution‐processed thick optical spacer with polymer blends of different thicknesses can process solar cells of similar efficiency over 7% but of different colors. 相似文献
994.
Nanoimprinted,Submicrometric, MOF‐Based 2D Photonic Structures: Toward Easy Selective Vapors Sensing by a Smartphone Camera 下载免费PDF全文
Olivier Dalstein Davide R. Ceratti Cédric Boissière David Grosso Andrea Cattoni Marco Faustini 《Advanced functional materials》2016,26(1):81-90
In this work, a soft‐lithographic approach to fabricate submicrometer metal organic framework (MOF)‐based 2D photonic structures is described. Nanometric zeolitic imidazole framework material ZIF‐8 (zinc) is chosen as the sensible MOF material because of its chemical stability and its vapor selective adsorption properties. Two different systems are fabricated: nanopatterned colloidal ZIF‐8 homo‐ and ZIF‐8/TiO2 heterostructures. Several features (stripes, squares, etc.) with dimensions of 200 nm are replicated on different substrates such as silicon, flexible plastics, and even aluminum cans, over relatively large surfaces (up to 1 cm2). In addition, the use of these photonic MOF‐heterostructures as very low‐cost sensing platforms compatible with smartphone technology is demonstrated. This method relies on the evaluation of the change in diffraction efficiency of the photonic MOF‐patterns, induced by the MOF refractive index variation, which is simply detected by a charge coupled device (CCD) camera, as those integrated in smartphones, without need for complex optical instrumentations for transduction data processing. Performances of the sensors are first evaluated using isopropyl alcohol adsorption/desorption cycling as a model case. In addition, a “real” environmental issue is tackled. Selective detection of styrene in presence of interfering water is demonstrated at concentrations below the human permissible exposure limit. In situ ellispometric analyses are also carried out in order to confirm the sensor performances and to propose a mechanism for styrene uptake into the nanoMOFs. 相似文献
995.
根据马赫-曾德尔干涉仪(MZI)原理在两根标准 单模光纤(SMF)中间熔接一段保偏光纤(PMF),通过电弧 放电和熔接推挤形成凹-凸型锥,构成温度光纤传感器。利用PMF的包层模、纤芯模对温度 的灵敏度差异,通 过检测透射光谱中不同干涉谷的波长和强度变化,实现对温度的测量。实验表明,在25~70℃的范围内, 当PMF的长为30mm时,在1533.68nm和1560.92nm时的干涉谷对应的波长灵敏度为0.029 nm/℃和0.040nm/℃,对应的强度灵敏度为0.12dB/℃和0.097dB/℃;当PMF的长度为 40mm时,在1540.54nm和1568.64nm时的干涉谷对 应的波长灵敏度为0.083 nm/℃和0.099nm/℃,强度 灵敏度为0.152 dB/℃和-0.211dB/℃。根据 光谱仪0.01nm和0.01dB的分辨率,对应的波 长和强度分辨率分别为0.100 ℃和0.047℃。 相似文献
996.
为了提高复杂背景下红外目标跟踪的准确性和鲁棒 性,提出了紧耦合粒子滤波(PF)与均值漂移(mean shift)的红外目标跟踪方法。在PF框 架下,利用一组5参数集(中心横坐标、中心纵坐标、宽度、高度以及倾斜角)作为状 态变量表 征随机的粒子样本;然后使用自适应均值漂移作为一种迭代模式寻找过程,对随机粒子样本 进行重新分配,使粒子向目标 状态的最大后验核密度估计方向移动,同时利用迭代过程中的Bhattacharyya系数对粒子的 权值进行更新;最后利用重新分配 后的加权粒子集合实现对红外目标的跟踪。实现结果表明,与一般的PF相比,本文方法能有 效减少所需粒子数(N=15),进而降 低跟踪耗时;与现有的PF与均值漂移相结合的方法相比,本文方法在耗费时间 仅增加14%的代价上,使跟踪误差大大降低(约 为原误差的1/3至1/4),准确性和鲁棒性得到显著提高;本文方法能够实现在复杂背景下稳 健准确地跟踪红外目标。 相似文献
997.
Colm O'Dwyer Vladimir Lavayen David A. Tanner Simon B. Newcomb Eglantina Benavente Guillermo González Clivia M. Sotomayor Torres 《Advanced functional materials》2009,19(11):1736-1745
The relationship between the nanoscale structure of vanadium pentoxide nanotubes and their ability to accommodate Li+ during intercalation/deintercalation is explored. The nanotubes are synthesized using two different precursors through a surfactant‐assisted templating method, resulting in standalone VO x (vanadium oxide) nanotubes and also “nano‐urchin”. Under highly reducing conditions, where the interlaminar uptake of primary alkylamines is maximized, standalone nanotubes exhibit near‐perfect scrolled layers and long‐range structural order even at the molecular level. Under less reducing conditions, the degree of amine uptake is reduced due to a lower density of V4+ sites and less V2O5 is functionalized with adsorbed alkylammonium cations. This is typical of the nano‐urchin structure. High‐resolution TEM studies revealed the unique observation of nanometer‐scale nanocrystals of pristine unreacted V2O5 throughout the length of the nanotubes in the nano‐urchin. Electrochemical intercalation studies revealed that the very well ordered xerogel‐based nanotubes exhibit similar specific capacities (235 mA h g?1) to Na+‐exchange nanorolls of VOx (200 mA h g?1). By comparison, the theoretical maximum value is reported to be 240 mA h g?1. The VOTPP‐based nanotubes of the nano‐urchin 3D assemblies, however, exhibit useful charge capacities exceeding 437 mA h g?1, which is a considerable advance for VOx based nanomaterials and one of the highest known capacities for Li+ intercalated laminar vanadates. 相似文献
998.
Effect of dislocations on performance of LWIR HgCdTe photodiodes 总被引:2,自引:0,他引:2
The epitaxial growth of HgCdTe on alternative substrates has emerged as an enabling technology for the fabrication of large-area
infrared (IR) focal plane arrays (FPAs). One key technical issue is high dislocation densities in HgCdTe epilayers grown on
alternative substrates. This is particularly important with regards to the growth of HgCdTe on heteroepitaxial Si-based substrates,
which have a higher dislocation density than the bulk CdZnTe substrates typically used for epitaxial HgCdTe material growth.
In the paper a simple model of dislocations as cylindrical regions confined by surfaces with definite surface recombination
is proposed. Both radius of dislocations and its surface recombination velocity are determined by comparison of theoretical
predictions with carrier lifetime experimental data described by other authors. It is observed that the carrier lifetime depends
strongly on recombination velocity; whereas the dependence of the carrier lifetime on dislocation core radius is weaker. The
minority carrier lifetime is approximately inversely proportional to the dislocation density for densities higher than 105 cm−2. Below this value, the minority carrier lifetime does not change with dislocation density. The influence of dislocation density
on the R0A product of long wavelength infrared (LWIR) HgCdTe photodiodes is also discussed. It is also shown that parameters of dislocations
have a strong effect on the R0A product at temperature around 77 K in the range of dislocation density above 106 cm−2. The quantum efficiency is not a strong function of dislocation density. 相似文献
999.
Hongyan Han Hongyan Ning Shanshan Liu Qiang Lu Zhihai Fan Haijun Lu Guozhong Lu David L. Kaplan 《Advanced functional materials》2016,26(3):421-432
Functional vascularization is critical for the clinical regeneration of complex tissues such as kidney, liver, or bone. The immobilization or delivery of growth factors has been explored to improve vascularization capacity of tissue‐engineered constructs; however, the use of growth factors has inherent problems such as the loss of signaling capability and the risk of complications including immunological responses and cancer. Here, a new method of preparing water‐insoluble silk protein scaffolds with vascularization capacity using an all‐aqueous process is reported. Acid is added temporally to tune the self‐assembly of silk in the lyophilization process, resulting in water‐insoluble scaffold formation directly. These biomaterials are mainly noncrystalline, offering improved cell proliferation than previously reported silk materials. These systems also have an appropriate softer mechanical property that could provide physical cues to promote cell differentiation into endothelial cells, and enhance neovascularization and tissue ingrowth in vivo without the addition of growth factors. Therefore, silk‐based degradable scaffolds represent an exciting biomaterial option, with vascularization capacity for soft tissue engineering and regenerative medicine. 相似文献
1000.
New Drug‐Structure‐Directing Agent Concept: Inherent Pharmacological Activity Combined with Templating Solid and Hollow‐Shell Mesostructured Silica Nanoparticles 下载免费PDF全文
Victoria Morales María Gutiérrez‐Salmerón Moisés Balabasquer Josefa Ortiz‐Bustos Ana Chocarro‐Calvo Custodia García‐Jiménez Rafael A. García‐Muñoz 《Advanced functional materials》2016,26(40):7291-7303
One of the major challenges in medicine is the delivery and control of drug release over time. Current approaches take advantage of mesostructured silica nanoparticles (MSNs) as carriers but suffer several problems including complex synthesis that requires sequential steps for (1) removal of surfactants and (2) functionalization of MSNs to allow upload of the drugs. Here, a novel solution is presented to these restrictions: the design of drug‐structure‐directing agents (DSDAs) with dual inherent pharmacological activity and ability to direct the formation of solid and hollow‐shell MSNs. Pharmacologically active DSDAs obtained by amidation of drugs with fatty acids are allowed to form micelles, around which the inorganic species self‐assembled to form MSNs. Since the DSDAs direct the formation of MSNs, the steps to remove surfactants, functionalization, and drug upload are not required. The MSNs thus prepared provide sustained release of the drug over more than six months, as well as rapid cellular internalization by both physiological and tumoral human colon cells without affecting cell viability. Moreover, the gradual intracellular release of both, the active drug and lipid moiety with potential nutraceutical properties is proved. MSN particles designed with this approach are promising vehicles for controlled and sustained intra‐or extracellular drug‐delivery. 相似文献