Nanocrystal solar cells processed from solution
    2.
    发明授权
    Nanocrystal solar cells processed from solution 有权
    从溶液中加工纳米晶太阳能电池

    公开(公告)号:US08440906B2

    公开(公告)日:2013-05-14

    申请号:US12083723

    申请日:2006-10-20

    IPC分类号: H01L31/00

    摘要: A photovoltaic device having a first electrode layer, a high resistivity transparent film disposed on the first electrode, a second electrode layer, and an inorganic photoactive layer disposed between the first and second electrode layers, wherein the inorganic photoactive layer is disposed in at least partial electrical contact with the high resistivity transparent film, and in at least partial electrical contact with the second electrode. The photoactive layer has a first inorganic material and a second inorganic material different from the first inorganic material, wherein the first and second inorganic materials exhibit a type II band offset energy profile, and wherein the photoactive layer has a first population of nanostructures of a first inorganic material and a second population of nanostructures of a second inorganic material.

    摘要翻译: 一种具有第一电极层,设置在第一电极上的高电阻率透明膜,第二电极层和设置在第一和第二电极层之间的无机光活性层的光伏器件,其中无机光敏层至少部分地 与高电阻率透明膜电接触,并与第二电极至少部分电接触。 光活性层具有与第一无机材料不同的第一无机材料和第二无机材料,其中第一和第二无机材料表现出II型带偏移能量分布,并且其中光活性层具有第一种纳米结构的第一种 无机材料和第二无机材料的第二组纳米结构体。

    Methods of making functionalized nanorods
    3.
    发明授权
    Methods of making functionalized nanorods 有权
    制备官能化纳米棒的方法

    公开(公告)号:US08093494B2

    公开(公告)日:2012-01-10

    申请号:US11667101

    申请日:2005-11-10

    IPC分类号: H01L31/04 B05D1/36 B32B15/08

    摘要: A process for forming functionalized nanorods. The process includes providing a substrate, modifying the substrate by depositing a self-assembled monolayer of a bi-functional molecule on the substrate, wherein the monolayer is chosen such that one side of the bi-functional molecule binds to the substrate surface and the other side shows an independent affinity for binding to a nanocrystal surface, so as to form a modified substrate. The process further includes contacting the modified substrate with a solution containing nanocrystal colloids, forming a bound monolayer of nanocrystals on the substrate surface, depositing a polymer layer over the monolayer of nanocrystals to partially cover the monolayer of nanocrystals, so as to leave a layer of exposed nanocrystals, functionalizing the exposed nanocrystals, to form functionalized nanocrystals, and then releasing the functionalized nanocrystals from the substrate.

    摘要翻译: 一种形成官能化纳米棒的方法。 该方法包括提供底物,通过在衬底上沉积双功能分子的自组装单层来修饰衬底,其中选择单层使得双功能分子的一侧结合到衬底表面而另一侧 侧表现出与纳米晶体表面结合的独立亲和性,从而形成改性底物。 该方法还包括使修饰的底物与含有纳米晶体胶体的溶液接触,在衬底表面上形成结合的纳米晶体单层,在纳米晶体的单层上沉积聚合物层以部分地覆盖纳米晶体的单层,以便留下一层 暴露的纳米晶体,官能化暴露的纳米晶体,以形成官能化的纳米晶体,然后从底物释放官能化的纳米晶体。

    LIQUID FLOW CELLS HAVING GRAPHENE ON NITRIDE FOR MICROSCOPY
    10.
    发明申请
    LIQUID FLOW CELLS HAVING GRAPHENE ON NITRIDE FOR MICROSCOPY 有权
    液氮在液氮中用于显微镜

    公开(公告)号:US20160042912A1

    公开(公告)日:2016-02-11

    申请号:US14817551

    申请日:2015-08-04

    IPC分类号: H01J37/20 G02B1/12

    摘要: This disclosure provides systems, methods, and apparatus related to liquid flow cells for microscopy. In one aspect, a device includes a substrate having a first and a second oxide layer disposed on surfaces of the substrate. A first and a second nitride layer are disposed on the first and second oxide layers, respectively. A cavity is defined in the first oxide layer, the first nitride layer, and the substrate, with the cavity including a third nitride layer disposed on walls of the substrate and the second oxide layer that define the cavity. A channel is defined in the second oxide layer. An inlet port and an outlet port are defined in the second nitride layer and in fluid communication with the channel. A plurality of viewports is defined in the second nitride layer. A first graphene sheet is disposed on the second nitride layer covering the plurality of viewports.

    摘要翻译: 本公开提供了与用于显微镜的液体流动池相关的系统,方法和装置。 一方面,一种器件包括具有设置在衬底表面上的第一和第二氧化物层的衬底。 第一和第二氮化物层分别设置在第一和第二氧化物层上。 在第一氧化物层,第一氮化物层和衬底中限定空腔,空腔包括设置在衬底的壁上的第三氮化物层和限定空腔的第二氧化物层。 在第二氧化物层中限定通道。 入口端口和出口限定在第二氮化物层中并与通道流体连通。 在第二氮化物层中限定多个视口。 第一石墨烯片被布置在覆盖多个视口的第二氮化物层上。