Abstract:
The design and synthesis of six nickel charge transfer (CT) complexes are described herein. The six nickel CT complexes have a nickel center, two organic ligands coordinated with the nickel center to form a dianionic square planar supramolecule and an organic counter-cation as represented by The ligands and counter-cations are selected to optimize properties, such as molecular alignment, film morphology, and molecular packaging. Described herein, the ligands can be 2,3-pyrazinedithiol (L1), 1,2-benzenedithol (L2) or 2,3-quinoxalinedithol (L3) and the counter-cations can be diquat (2,2′-ebpy) or methyl viologen (4,4′-mbpy). The six nickel CT complexes can also be utilized semiconductor devices, such as thin film transistors or inverters. Processes are also provided for the fabrication of semiconductors devices. The processes can include fabricating a substrate with a bilayer octadecylphosphonic acid (ODPA)/Al2O3 dielectric and applying one of the six nickel charge transfer (CT) complexes to the substrate.
Abstract translation:本文描述了六种镍电荷转移(CT)复合物的设计和合成。 六个镍CT复合物具有镍中心,两个有机配体与镍中心配位以形成二阴离子正方形平面超分子和由“配体”和“反阳离子”所表示的有机抗衡阳离子,以优化特性,如分子对准 ,膜形态和分子包装。 本文描述的配体可以是2,3-吡嗪二硫醇(L1),1,2-苯二酚(L2)或2,3-喹喔啉基二醇(L3),抗衡阳离子可以是二季铵盐(2,2'-ebpy)或 甲基紫精(4,4'-mbpy)。 六个镍CT复合体也可以用于薄膜晶体管或逆变器等半导体器件。 还提供了用于制造半导体器件的工艺。 这些方法可以包括用双层十八烷基膦酸(ODPA)/ Al 2 O 3电介质制造衬底,并将六种镍电荷转移(CT)复合物中的一种施加到衬底上。
Abstract:
Measures are provided for mobile relay support in relay-enhanced access networks. Such measures include setting up a first packet data connection for traffic in a relay-enhanced access network, which relates to first-type user terminals using the same access technology as a base station, from a mobile relay towards a packet data network via a first packet gateway functionality collocated with the base station currently serving the mobile relay, and setting up a second packet data connection for traffic in the relay-enhanced access network, which relates to second-type user terminals using another access technologies as the base station and the mobile relay, from the mobile relay towards the packet data network via a second packet gateway functionality external to the base station currently serving the mobile relay.
Abstract:
Disclosed are carboxamide compounds as well as pharmaceutical compositions and methods of use. One embodiment is a compound having the structure in which R1, R2, R3, R4, T, p, q, w and x are as described herein. In certain embodiments, a compound disclosed herein activates the AMPK pathway, and can be used to treat metabolism-related disorders and conditions.
Abstract:
Disclosed are carboxamide, sulfonamide and amine compounds, as well as pharmaceutical compositions and methods of use. One embodiment is a compound having the structure in which R1, R2, R4, E, T, n and x are as described herein. In certain embodiments, a compound disclosed herein activates the AMPK pathway, and can be used to treat metabolism-related disorders and conditions.
Abstract:
The present invention provides an electronic card connector, and intends to arrange one single testing terminal which forms a testing circuit together with an inherent conductive terminal of the electronic card connector, thereby obtaining a testing function which must be done by using two insertion pins in the prior art. Due to omitting one testing terminal, the volume of the electronic card connector is further reduced, and product assembly becomes more simply and opera table, thereby improving product efficiency, and greatly lowing manufacturing cost.
Abstract:
The present invention provides N-substituted-heterocycloalkyloxybenzamide compounds, as well as pharmaceutical compositions and methods of use. One embodiment of the invention is a compound having the structure in which R1, R2, R3, R4, T, n, w and x are as described herein. In certain embodiments of the invention, a compound of the present invention activates the AMPK pathway, and can be used to treat metabolism-related disorders and conditions.
Abstract:
A method (400) for automatically performing a plurality of image processing functions on an electronic device (100) by providing a plurality of image processing option keys (405) including a first image processing option key and a second image processing option key. The first image processing option key is associated with a first image processing function and the second image processing option key is associated with a second image processing function that is different from the first image processing function. The method (400) performs capturing (410) a first image using a camera (119) in response to a user activation of the first image processing option key and then automatically performing (415) the first image processing function in response to capturing the first image. Next, there is performed a capturing (420) a second image using the camera (119) in response to a user activation of the second image processing option key and automatically performing (425) the second image processing function in response to capturing the second image. Both the first image processing function and the second image processing function are selected from a group of functions.
Abstract:
A system and method is disclosed to provide inter-packet-node paging between communication networks. The networks recognize whether inter-network paging is supported therebetween and advertise overlapping codes between networks having adjacent location areas. When the mobile station moves from the first network to the second network, the first network determines whether the second network shares an overlapping code therewith. If the networks share an overlapping code, the first network sends a paging request to the second network including link configuration information and the notification for the mobile station, wherein the notification can be delivered to mobile station in the second location area of the second communication network without the mobile station having to register in the second communication network.
Abstract:
A communication system is provided that allows a Hybrid Access Terminal (HAT) that is monitoring, or is engaged in a circuit voice call in, a circuit switched network and has a dormant packet data session anchored on a packet switched network, to send packet data to, and to receive packet data from, a packet data network connected to the packet switched network without having to switch to the packet switched network and even though a packet data session is not established in the circuit switched network.
Abstract:
A press-contacting conductive terminal device comprises a non-conductive enclosure, a base, a contact member and a resilient member. The non-conductive enclosure defines a cylindrically shaped through hole. A front end and a rear end of the through hole having a first opening and a second opening, respectively. The contact member having a front end portion and a rear end portion, the rear end portion of the contact member and the resilient member being received in the through hole. One end of the resilient member abutting against the rear end portion of the contact member and the front end portion of the contact member extending through the first opening and beyond a front end of the non-conductive enclosure. The base including two side wings and a base portion, the base closing the second opening of the rear end of the through hole. The rear end of the contact member being set between the two side wings of the base and the outer wall of the rear end of the contact member sliding within the inner walls and the two side wings. Thereby, the assembled press-contacting conductive terminal device omits the need for the previous metal shell, saving material, reducing weight, and saving cost.