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Carbon quantum dots as novel sensitizers for photoelectrochemical solar hydrogen generation and their size-dependent effect

机译:碳量子点作为光电化学太阳能制氢的新型敏化剂及其尺寸依赖性效应

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摘要

As a result of global energy needs, much research has been devoted to the conversion of solar energy to various usable forms, such as chemical energy in the form of hydrogen via water splitting. To make the conversion methods efficient, economically practical, and industrially scalable, sensitizers capable of utilizing visible and near infrared (IR) light need to be developed. Herein, water-soluble, colloidally stable carbon quantum dots (CQDs) are successfully synthesized by a facile one-step alkali-assisted electrochemical method. Owing to their broad visible light absorption, upconversion luminescence properties and efficient electron injection to TiO_2, these CQDs can be used as the sensitizer for photoelectrochemical cells and show an optimized photocurrent of 1.2 mA cm~(-2) at 0 V versus Ag/AgCl under 100 mW cm~(-2) simulated sunlight. The above results indicate that the elementally abundant and environmentally friendly CQDs, as a novel sensitizer, can surely be employed to make full use of the visible spectrum of sunlight for their application in photovoltaic devices.
机译:由于全球能源需求,许多研究致力于将太阳能转换为各种可用形式,例如通过水分解以氢形式产生的化学能。为了使转换方法高效,经济实用并且在工业上可扩展,需要开发能够利用可见光和近红外(IR)光的敏化剂。在这里,水溶性,胶体稳定的碳量子点(CQDs)通过一种简便的一步碱辅助电化学方法成功地合成了。由于其广泛的可见光吸收,上转换发光特性和对TiO_2的有效电子注入,这些CQD可用作光电化学电池的敏化剂,并且在0 V下相对于Ag / AgCl表现出1.2 mA cm〜(-2)的优化光电流。 100 mW cm〜(-2)模拟阳光下以上结果表明,作为新型敏化剂,元素丰富且对环境友好的CQD可以肯定地用于充分利用太阳光的可见光谱,将其用于光伏器件。

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