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関連する概念動画

Photoelectric Effect02:26

Photoelectric Effect

When light of a particular wavelength strikes a metal surface, electrons are emitted. This is called the photoelectric effect. The minimum frequency of light that can cause such emission of electrons is called the threshold frequency, which is specific to the metal. Light with a frequency lower than the threshold frequency, even if it is of high intensity, cannot initiate the emission of electrons. However, when the frequency is higher than the threshold value, the number of electrons ejected...
Voltaic/Galvanic Cells02:47

Voltaic/Galvanic Cells

Spontaneous Chemical Reactions
Spontaneous redox reactions occur abundantly in nature. The chemical reaction occurring in a disposable AA battery powering our remote controls is one such example of a spontaneous redox reaction. Another example is the immersion of coiled copper wire into an aqueous silver nitrate solution. The reaction shows a gradual, visually impressive color change from colorless to bright blue and the formation of a grey precipitate on the copper wire. In this experiment,...
Thermal and Photochemical Electrocyclic Reactions: Overview01:26

Thermal and Photochemical Electrocyclic Reactions: Overview

Electrocyclic reactions are reversible reactions. They involve an intramolecular cyclization or ring-opening of a conjugated polyene. Shown below are two examples of electrocyclic reactions. In the first reaction, the formation of the cyclic product is favored. In contrast, in the second reaction, ring-opening is favored due to the high ring strain associated with cyclobutene formation.
Photoluminescence: Applications01:14

Photoluminescence: Applications

Photoluminescence offers a wide range of applications due to its inherent sensitivity and selectivity. This technique allows for both direct and indirect analyses of the analyte. Direct quantitative analysis is possible when the analyte exhibits a favorable quantum yield for fluorescence or phosphorescence. However, an indirect analysis may be feasible if the analyte is not fluorescent or phosphorescent, or if the quantum yield is unfavorable. Indirect methods include reacting the analyte with...
P-N junction01:11

P-N junction

A p-n junction is formed when p-type and n-type semiconductor materials are joined together. At the interface of the p-n junction, holes from the p-side and electrons from the n-side begin to diffuse into the opposite sides due to the concentration gradient. This diffusion of carriers leads to a region around the junction where there are no free charge carriers, known as the depletion region. The charge density within the depletion region for the n-side and p-side can be described by the...
Schottky Barrier Diode01:27

Schottky Barrier Diode

Schottky barrier diodes are specialized semiconductor devices characterized by their unique construction. This construction involves combining a metal layer with a moderately doped n-type semiconductor material. This combination leads to the formation of a Schottky barrier, a pivotal element that defines the diode's operational characteristics. The core functionality of Schottky barrier diodes is their capacity to allow current to flow in only one direction due to their distinctive...

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関連する実験動画

Updated: Jun 23, 2026

Fabrication of Fully Solution Processed Inorganic Nanocrystal Photovoltaic Devices
11:06

Fabrication of Fully Solution Processed Inorganic Nanocrystal Photovoltaic Devices

Published on: July 8, 2016

内部電子放出に基づいた光伏装置の構造.

Eric W McFarland1, Jing Tang

  • 1Department of Chemical Engineering, University of California, Santa Barbara, California 93106-5080, USA. mcfar@engineering.ucsb.edu

Nature
|February 7, 2003
PubMed
まとめ

研究者らは,光受容体に光の吸収が起こり,太陽エネルギー変換のための効率的な電子転送を可能にする新しい多層光伏装置を開発しました. このアプローチは,耐久性のある低コストの太陽電池への有望な経路を提供します.

科学分野:

  • 材料科学 材料科学とは
  • 固体物理 固体物理学
  • 再生可能エネルギーの再生可能エネルギー

背景:

  • 従来の太陽電池は,半導体の大量吸収と電荷分離のための電場に依存しています.
  • 費用対効果的で効率的な光伏装置の探求は,1950年代から続いている.
  • 既存の技術は,コスト,耐久性,効率性の課題に直面しています.

研究 の 目的:

  • 新しい多層の光伏装置構造を導入する.
  • 光伏エネルギー変換の代替メカニズムを探求する.
  • 低コストで耐久性の高い太陽電池の潜在能力を実証する.

主な方法:

  • 超薄金属半導体結合シュットキーダイオードに光受容体を持つ多層デバイスの製造.
  • ショットキー・バリアの上での弾道電子輸送を利用して,光電流を生成する.
  • 可視光照明下でのデバイスの性能の特徴.

主要な成果:

  • フォトンの吸収は,半導体ではなく,表面の光受容体で行われます.
  • 光刺激電子は,貴金属を通って弾道的にショットキー・バリアまで移動する.
  • 装置は600〜800mVのオープン回路光電圧と10〜18マイクロAcmの光電流を達成しました.

さらに関連する動画

In situ Grazing Incidence Small Angle X-ray Scattering on Roll-To-Roll Coating of Organic Solar Cells with Laboratory X-ray Instrumentation
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In situ Grazing Incidence Small Angle X-ray Scattering on Roll-To-Roll Coating of Organic Solar Cells with Laboratory X-ray Instrumentation

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Step-by-Step Guide for Harnessing Organic Light Emitting Diodes by Solution Processed Device Fabrication of a TADF Emitter
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Step-by-Step Guide for Harnessing Organic Light Emitting Diodes by Solution Processed Device Fabrication of a TADF Emitter

Published on: November 7, 2025

関連する実験動画

Last Updated: Jun 23, 2026

Fabrication of Fully Solution Processed Inorganic Nanocrystal Photovoltaic Devices
11:06

Fabrication of Fully Solution Processed Inorganic Nanocrystal Photovoltaic Devices

Published on: July 8, 2016

In situ Grazing Incidence Small Angle X-ray Scattering on Roll-To-Roll Coating of Organic Solar Cells with Laboratory X-ray Instrumentation
06:49

In situ Grazing Incidence Small Angle X-ray Scattering on Roll-To-Roll Coating of Organic Solar Cells with Laboratory X-ray Instrumentation

Published on: March 2, 2021

Step-by-Step Guide for Harnessing Organic Light Emitting Diodes by Solution Processed Device Fabrication of a TADF Emitter
06:25

Step-by-Step Guide for Harnessing Organic Light Emitting Diodes by Solution Processed Device Fabrication of a TADF Emitter

Published on: November 7, 2025

  • 内部量子効率は10%に達した.
  • 結論:

    • この代替的な太陽光発電のアプローチは,表面吸収と弾性電子伝送を利用しています.
    • 半導体の役割は,過大電荷の輸送と分離に限られています.
    • 提案された構造は,多様な材料から耐久性のある低コストの太陽電池を開発する可能性を秘めています.