Urgel José I, Sánchez-Grande Ana, Vicent Diego J, Jelínek Pavel, Martín Nazario, Écija David
IMDEA Nanoscience, Campus Universitario de Cantoblanco, Madrid, 28049, Spain.
Institute of Physics of the Czech Academy of Science, Praha, 16200, Czech Republic.
Adv Mater. 2024 Aug;36(33):e2402467. doi: 10.1002/adma.202402467. Epub 2024 Jun 20.
The design of innovative carbon-based nanostructures stands at the forefront of both chemistry and materials science. In this context, π-conjugated compounds are of great interest due to their impact in a variety of fields, including optoelectronics, spintronics, energy storage, sensing and catalysis. Despite extensive research efforts, substantial knowledge gaps persist in the synthesis and characterization of new π-conjugated compounds with potential implications for science and technology. On-surface synthesis has emerged as a powerful discipline to overcome limitations associated with conventional solution chemistry methods, offering advanced tools to characterize the resulting nanomaterials. This review specifically highlights recent achievements in the utilization of molecular precursors incorporating carbon geminal (gem)-polyhalides as functional groups to guide the formation of π-conjugated 0D species, as well as 1D, quasi-1D π-conjugated polymers, and 2D nanoarchitectures. By delving into reaction pathways, novel structural designs, and the electronic, magnetic, and topological features of the resulting products, the review provides fundamental insights for a new generation of π-conjugated materials.
创新碳基纳米结构的设计处于化学和材料科学的前沿。在此背景下,π共轭化合物因其在包括光电子学、自旋电子学、能量存储、传感和催化等多个领域的影响而备受关注。尽管进行了广泛的研究,但在具有潜在科学技术意义的新型π共轭化合物的合成和表征方面仍存在重大知识空白。表面合成已成为一门强大的学科,可克服与传统溶液化学方法相关的局限性,提供先进工具来表征所得纳米材料。本综述特别强调了利用含碳偕二(偕)多卤化物作为官能团的分子前体来指导π共轭零维物种以及一维、准一维π共轭聚合物和二维纳米结构形成的最新成果。通过深入研究反应途径、新颖的结构设计以及所得产物的电子、磁性和拓扑特征,本综述为新一代π共轭材料提供了基本见解。