Liu Yuhua, Zhang Wei, Zheng Weitao
Key Laboratory of Automobile Materials MOE, and School of Materials Science and Engineering, and Jilin Provincial International Cooperation Key Laboratory of High-Efficiency Clean Energy Materials, and Electron Microscopy Center, and International Center of Future Science, Jilin University, Changchun, 130012, People's Republic of China.
Nanomicro Lett. 2022 Aug 2;14(1):158. doi: 10.1007/s40820-022-00908-3.
It is well known that two-dimensional (2D) MXene-derived quantum dots (MQDs) inherit the excellent physicochemical properties of the parental MXenes, as a Chinese proverb says, "Indigo blue is extracted from the indigo plant, but is bluer than the plant it comes from." Therefore, 0D QDs harvest larger surface-to-volume ratio, outstanding optical properties, and vigorous quantum confinement effect. Currently, MQDs trigger enormous research enthusiasm as an emerging star of functional materials applied to physics, chemistry, biology, energy conversion, and storage. Since the surface properties of small-sized MQDs include the type of surface functional groups, the functionalized surface directly determines their performance. As the Nobel Laureate Wolfgang Pauli says, "God made the bulk, but the surface was invented by the devil," and it is just on the basis of the abundant surface functional groups, there is lots of space to be thereof excavated from MQDs. We are witnessing such excellence and even more promising to be expected. Nowadays, MQDs have been widely applied to catalysis, whereas the related reviews are rarely reported. Herein, we provide a state-of-the-art overview of MQDs in catalysis over the past five years, ranging from the origin and development of MQDs, synthetic routes of MQDs, and functionalized MQDs to advanced characterization techniques. To explore the diversity of catalytic application and perspectives of MQDs, our review will stimulate more efforts toward the synthesis of optimal MQDs and thereof designing high-performance MQDs-based catalysts.
众所周知,二维(2D)MXene衍生的量子点(MQDs)继承了母体MXenes的优异物理化学性质,正如中国一句谚语所说:“青,取之于蓝,而青于蓝。” 因此,零维量子点具有更大的表面体积比、出色的光学性质和强烈的量子限域效应。目前,MQDs作为一种应用于物理、化学、生物学、能量转换和存储的功能材料新星,引发了巨大的研究热情。由于小尺寸MQDs的表面性质包括表面官能团的类型,功能化表面直接决定了它们的性能。正如诺贝尔奖获得者沃尔夫冈·泡利所说:“上帝创造了本体,但表面是魔鬼发明的”,正是基于丰富的表面官能团,从MQDs中挖掘的空间还有很多。我们正在见证这样的卓越,甚至更多的期待。如今,MQDs已广泛应用于催化领域,而相关综述却鲜有报道。在此,我们提供了过去五年中MQDs在催化方面的最新综述,内容涵盖MQDs的起源与发展、合成路线、功能化MQDs以及先进的表征技术。为了探索MQDs催化应用的多样性和前景,我们的综述将激发更多努力来合成最优的MQDs,并设计基于高性能MQDs的催化剂。