首页> 外国专利> Producing solar energy based on nanoparticles, comprises attaching a layer, other substrate layers and/or substrate by grafting of particles forming adhering points for the layer or substrate to be deposited or printed

Producing solar energy based on nanoparticles, comprises attaching a layer, other substrate layers and/or substrate by grafting of particles forming adhering points for the layer or substrate to be deposited or printed

机译:基于纳米颗粒产生太阳能,包括通过嫁接形成用于沉积或印刷的层或基底的附着点的粒子,来附着层,其他基底层和/或基底。

摘要

The method comprises attaching a layer, other substrate layers and/or substrate by grafting of particles forming adhering points for the layer or substrate to be deposited or printed. The received layer is an absorbent layer (on the substrate). The layer and/or the substrate are printed by piezoelectric inkjet technique. The layer and/or substrate comprise multi-spectral absorption element. The surface of the layer and/or substrate is treated by chemical and/or laser procedure. The absorbent layer comprises a non-silicon layer, amorphous silicon, inorganic and/or organic material. The method comprises attaching a layer, other substrate layers and/or substrate by grafting of particles forming adhering points for the layer or substrate to be deposited or printed. The received layer is an absorbent layer (on the substrate). The layer and/or the substrate are printed by piezoelectric inkjet technique. The layer and/or substrate comprise multi-spectral absorption element. The surface of the layer and/or substrate is treated by chemical and/or laser procedure. The absorbent layer comprises a non-silicon layer, amorphous silicon, inorganic material, organic material and/or oligomeric group, microcrystalline silicon, inorganic nanofilament dispersed in an organic matrix, inorganic tetrapods dispersed in an organic matrix, nanomaterials such as quantum box, ionic conductive polymer gels, sol-gel nanocomposite containing an ionic liquid, ionic conductors, organic conductive holes with low molecular weight, 60C and/or other tiny molecules, and/or a nanostructured layer having template and/or a porous inorganic matrix filled with organic material (doped or undoped), a cellular polymer architecture/mixture and/or a cellular microcrystalline silicon architecture. An independent claim is included for a device for producing solar energy based on nanoparticles.
机译:该方法包括通过嫁接形成用于待沉积或印刷的层或基底的粘附点的颗粒来接附层,其他基底层和/或基底。接收层是吸收剂层(在基底上)。该层和/或基底通过压电喷墨技术印刷。该层和/或衬底包括多光谱吸收元件。通过化学和/或激光程序处理层和/或衬底的表面。吸收层包括非硅层,非晶硅,无机和/或有机材料。该方法包括通过嫁接形成用于待沉积或印刷的层或基底的粘附点的颗粒来接附层,其他基底层和/或基底。接收层是吸收剂层(在基底上)。该层和/或基底通过压电喷墨技术印刷。该层和/或衬底包括多光谱吸收元件。通过化学和/或激光程序处理层和/或衬底的表面。吸收层包括非硅层,非晶硅,无机材料,有机材料和/或低聚基团,微晶硅,分散在有机基质中的无机纳米丝,分散在有机基质中的无机四足动物,纳米材料,例如量子盒,离子型导电聚合物凝胶,包含离子液体的溶胶-凝胶纳米复合材料,离子导体,低分子量,60C和/或其他小分子的有机导电孔和/或具有模板的纳米结构层和/或填充有有机物的多孔无机基质材料(掺杂或未掺杂),多孔聚合物结构/混合物和/或多孔微晶硅结构。包括关于基于纳米粒子的太阳能产生装置的独立权利要求。

著录项

  • 公开/公告号FR2931843A1

    专利类型

  • 公开/公告日2009-12-04

    原文格式PDF

  • 申请/专利权人 ROUSTAEI ALEX HR;

    申请/专利号FR20090001503

  • 发明设计人 ROUSTAEI ALEX HR;DJEMAI ABDELMADJID;

    申请日2009-03-27

  • 分类号C23C14/48;H01L31/042;

  • 国家 FR

  • 入库时间 2022-08-21 18:26:47

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