• 제목/요약/키워드: ZnO@graphene

검색결과 32건 처리시간 0.017초

폐수처리를 위한 세라믹 기반 광촉매 분리막: 총설 (Ceramic Based Photocatalytic Membrane for Wastewater Treatment: A Review)

  • 곽연수;라즈쿠마 파텔
    • 멤브레인
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    • 제32권3호
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    • pp.181-190
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    • 2022
  • 막여과는 흡착, 응집 등의 폐수 처리 방법에 비교해 경제적이며, 높은 효율을 보인다는 장점을 가지고 있다. 하지만, 막의 표면에 오염물질이 흡착하여 발생하는 막오염 현상으로 인해 막여과의 효율이 크게 줄어들게 된다. 다양한 종류의 막 중에서 세라믹 분리막은 친수성을 띄며, 화학적으로 안정되었기 때문에 오염방지에 효과적이다. 또한, 산화 그래핀 등을 활용한 복합막도 막오염을 예방하는 데 도움이 될 수 있다. 최근에는 막오염을 방지하고 시너지 효과를 얻기 위해 광촉매 분리막이 해결책으로 제시되었다. 막 분리는 광촉매의 단점인 촉매의 낮은 재사용률을 보완할 수 있으며, 광촉매 반응은 오염을 막을 수 있다.

Improved Photovoltaic Performance of Inverted Polymer Solar Cells using Multi-functional Quantum-dots Monolayer

  • Moon, Byung Joon;Lee, Kyu Seung;Kim, Sang Jin;Shin, Dong Heon;Oh, Yelin;Lee, Sanghyun;Kim, Tae-Wook;Park, Min;Son, Dong Ick;Bae, Sukang
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.400.1-400.1
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    • 2016
  • Interfacial engineering approaches as an efficient strategy for improving the power conversion efficiencies (PCEs) of inverted polymer solar cells (iPSCs) has attracted considerable attention. Recently, polymer surface modifiers, such as poly(ethyleneimine) (PEI) and polyethylenimine ethoxylated (PEIE), were introduced to produce low WF electrodes and were reported to have good electron selectivity for inverted polymer solar cells (iPSCs) without an n-type metal oxide layer. To obtain more efficient solar cells, quantum dots (QDs) are used as effective sensitizers across a broad spectral range from visible to near IR. Additionally, they have the ability to efficiently generate multiple excitons from a single photon via a process called carrier multiplication (CM) or multiple exciton generation (MEG). However, in general, it is very difficult to prepare a bilayer structure with an organic layer and a QD interlayer through a solution process, because most solvents can dissolve and destroy the organic layer and QD interlayer. To present a more effective strategy for surpassing the limitations of traditional methods, we studied and fabricated the highly efficient iPSCs with mono-layered QDs as an effective multi-functional layer, to enhance the quantum yield caused by various effects of QDs monolayer. The mono-layered QDs play the multi-functional role as surface modifier, sub-photosensitizer and electron transport layer. Using this effective approach, we achieve the highest conversion efficiency of ~10.3% resulting from improved interfacial properties and efficient charge transfer, which is verified by various analysis tools.

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