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41.
Nanotechnology research is booming worldwide, having an impact on multiple sectors and with a general belief that medical
and biological applications will form the greatest area of expansion over the next decade, driven by an attempt to bring radical
solutions to areas of unmet medical need. What is true in the USA is also being fulfilled in Europe, though generally at a
significantly lower investment level, even for ’large’ capital infrastructure and interdisciplinary centres. Against this,
the UK and its European partners are following the maxim ’small is beautiful’ and are attempting to identify and grow academic
research and commercial businesses in areas that traditional nanotechnology developments out of engineering or physics find
challenging. Thus, University College London and Imperial College, in a major joint project linked to other centres of excellence
both in the UK and in the rest of Europe, are building upon their internationally competitive medical and hard-matter research
activities to focus on and develop nanotechnology as a major sector of research activity. The two universities together form
one of the largest centres of biomedical research outside the USA. A novel approach to commercialisation has been taken, exemplified
by the establishment with government and private equity funds of a ‘Bionanotechnology Centre’ — this will act as a portal
for UK industry to access specialist skills to solve issues relating to developing nanotechnology-based medical applications,
for example, for environmental screening, diagnostics and therapy. This paper reviews our academic and business strategy with
examples from our current research portfolio, biased towards medicine as the London Centre for Nanotechnology’s most rapidly
growing area. 相似文献
42.
Salabat Khan Zijian Zhang Liehuang Zhu Mussadiq Abdul Rahim Sadique Ahmad Ruoyu Chen 《International Journal of Communication Systems》2020,33(15)
In classical public‐key infrastructure (PKI), the certificate authorities (CAs) are fully trusted, and the security of the PKI relies on the trustworthiness of the CAs. However, recent failures and compromises of CAs showed that if a CA is corrupted, fake certificates may be issued, and the security of clients will be at risk. As emerging solutions, blockchain‐ and log‐based PKI proposals potentially solved the shortcomings of the PKI, in particular, eliminating the weakest link security and providing a rapid remedy to CAs' problems. Nevertheless, log‐based PKIs are still exposed to split‐world attacks if the attacker is capable of presenting two distinct signed versions of the log to the targeted victim(s), while the blockchain‐based PKIs have scaling and high‐cost issues to be overcome. To address these problems, this paper presents a secure and accountable transport layer security (TLS) certificate management (SCM), which is a next‐generation PKI framework. It combines the two emerging architectures, introducing novel mechanisms, and makes CAs and log servers accountable to domain owners. In SCM, CA‐signed domain certificates are stored in log servers, while the management of CAs and log servers is handed over to a group of domain owners, which is conducted on the blockchain platform. Different from existing blockchain‐based PKI proposals, SCM decreases the storage cost of blockchain from several hundreds of GB to only hundreds of megabytes. Finally, we analyze the security and performance of SCM and compare SCM with previous blockchain‐ and log‐based PKI schemes. 相似文献
43.
摘 要
用空间电荷限制电流(SCLC)法测定了不同厚度(50-300nm)的Liq掺杂BPhen的电子迁移率。实验结果表明在33wt%Liq掺杂的BPhen中,当厚度达到150nm以后电子迁移率接近于体材料的迁移率。对于300nm厚的掺杂的BPhen,测定的电子迁移率约为5.4×10-3 cm2/Vs (电场强度为0.3MV/cm时),比本征BPhen的迁移率(3.4×10-4 cm2/Vs)高约一个数量级,而且其迁移率基本上不依赖于电场。同时还对掺杂的BPhen为有机电致发光器件(OLED)的典型厚度时的电子迁移率进行了测定。 相似文献
44.
Akeed A. Pavel Mehjabeen A. Khan Phumin Kirawanich N.E. Islam 《Solid-state electronics》2008,52(10):1536-1541
A methodology to simulate memory structures with metal nanocrystal islands embedded as floating gate in a high-κ dielectric material for simultaneous enhancement of programming speed and retention time is presented. The computational concept is based on a model for charge transport in nano-scaled structures presented earlier, where quantum mechanical tunneling is defined through the wave impedance that is analogous to the transmission line theory. The effects of substrate-tunnel dielectric conduction band offset and metal work function on the tunneling current that determines the programming speed and retention time is demonstrated. Simulation results confirm that a high-κ dielectric material can increase programming current due to its lower conduction band offset with the substrate and also can be effectively integrated with suitable embedded metal nanocrystals having high work function for efficient data retention. A nano-memory cell designed with silver (Ag) nanocrystals embedded in Al2O3 has been compared with similar structure consisting of Si nanocrystals in SiO2 to validate the concept. 相似文献
45.
Yawar Abbas Bangash Waseem Iqbal Saddaf Rubab Abdul Waheed Khan Waqas Aman 《International Journal of Communication Systems》2023,36(17):e5601
Base station's location privacy in a wireless sensor network (WSN) is critical for information security and operational availability of the network. A key part of securing the base station from potential compromise is to secure the information about its physical location. This paper proposes a technique called base station location privacy via software-defined networking (SDN) in wireless sensor networks (BSLPSDN). The inspiration comes from the architecture of SDN, where the control plane is separated from the data plane, and where control plane decides the policy for the data plane. BSLPSDN uses three categories of nodes, namely, a main controller to instruct the overall operations, a dedicated node to buffer and forward data, and lastly, a common node to sense and forward the packet. We employ three kinds of nodes to collaborate and achieve stealth for the base station and thus protecting it against the traffic-analysis attacks. Different traits of the WSN including energy status and traffic density can actively be monitored by BSLPSDN, which positively affects the energy goals, expected life of the network, load on common nodes, and the possibility of creating diversion in the wake of an attack on the base station. We incorporated multiple experiments to analyze and evaluate the performance of our proposed algorithm. We use single controller with multiple sensor nodes and multiple controllers with multiple sensor nodes to show the level of anonymity of BS. Experiments show that providing BS anonymity via multiple controllers is the best method both in terms of energy and privacy. 相似文献
46.
Khan Haroon Jan Mian Ahmad Alam Muhammad Dghais Wael 《Mobile Networks and Applications》2019,24(4):1306-1316
Mobile Networks and Applications - In Wireless Sensor Networks (WSNs), energy-efficient routing is required to conserve the scarce resources of these networks. Various energy-efficient routing... 相似文献
47.
The power generation demand is increasing day-by-day throughout the world, therefore, the use of hybrid systems becomes a significant solution. The hybrid renewable energy system (HRES) is used for delivering power in various regions in order to overcome intermittence of wind and solar resources. Because of increasing environmental problems, for example, greenhouse gas emission and energy cost have interested novel research into substitute methods in favour of electrical power generation. Maximum Power Point Tracking (MPPT) control method is a vast deal of novel research used for enhancing the efficiency of HRES. The authors have revealed that the hybrid techniques i.e. Global MPPT, fuzzy-neuro systems, Adaptive Neuro-Fuzzy Inference System (ANFIS), Perturbed and Observe (P&O) + Adaptive Neural Network (ANN) etc. can provide best results as compared to other MPPT control methods. This paper offering a state of art review of MPPT control techniques for HRES. 相似文献
48.
Ravi Shanker Seungse Cho Ayoung Choe Minsoo P. Kim Ziyauddin Khan Saewon Kang Hyunhyub Ko 《Advanced functional materials》2019,29(39)
Flexible alternating‐current electroluminescent (ACEL) devices have attracted considerable attention for their ability to produce uniform light emission under bent conditions and have enormous potential for applications in back lighting panels, decorative lighting in automobiles, and panel displays. Nevertheless, flexible ACEL devices generally require a high operating bias, which precludes their implementation in low power devices. Herein, solution‐processed La‐doped barium titanate (BTO:La) nanocuboids (≈150 nm) are presented as high dielectric constant (high‐k) nanodielectrics, which can enhance the dielectric constant of an ACEL device from 2.6 to 21 (at 1 kHz), enabling the fabrication of high‐performance flexible ACEL devices with a lower operating voltage as well as higher brightness (≈57.54 cd m?2 at 240 V, 1 kHz) than devices using undoped BTO nanodielectrics (≈14.3 cd m?2 at 240 V, 1 kHz). Furthermore, a uniform brightness across the whole panel surface of the flexible ACEL devices and excellent device reliability are achieved via the use of uniform networks of crossaligned silver nanowires as highly conductive and flexible electrodes. The results offer experimental validation of high‐brightness flexible ACELs using solution‐processed BTO:La nanodielectrics, which constitutes an important milestone toward the implementation of high‐k nanodielectrics in flexible displays. 相似文献
49.
Muhammad Ahmad Asim Ali Khan Muhammad Amin Hafiz M. Asif Sobia Baig 《International Journal of Communication Systems》2019,32(14)
Quadrifilar helix antenna (QHA) has its applications in satellite communications. This paper presents the performance optimisation of input and radiation characteristics of QHA in the presence of infinite and finite metallic ground planes. For the infinite ground plane, it has been observed that input parameters such as impedance and voltage standing wave ratio (VSWR) are stable, and the antenna has broader half power beamwidth (HPBW). Smaller metallic platforms that act as finite ground planes produce better 3‐dB axial ratio beamwidth and boresight axial ratio. Deployment of QHA on smaller metallic platforms such as nanosatellites and CubeSats enhances the circularly polarised beamwidth of the antenna with improved boresight axial ratio. However, on large low earth orbit (LEO) satellites, stable input characteristics and broader HPBW have been achieved at the cost of narrow circularly polarised beamwidth and degraded boresight axial ratio. 相似文献
50.
Khan Z.A. Rajan B.S. 《IEEE transactions on information theory / Professional Technical Group on Information Theory》2004,50(1):218-219
It is shown that two theorems regarding the existence of generalized linear processing orthogonal designs (GLPOD) are valid under more general conditions than those for which they have been stated and proved (for original paper see V. Tarokh et al., "Space-time block codes from orthogonal designs", ibid., vol. 45, p. 1456-1467 (1999)). 相似文献