Applied Physics Department and the center of Nano-Science and Nano-Technology, The Hebrew University of Jerusalem, Jerusalem 91904 Israel.
The Robert H. Smith Institute of Plant Sciences and Genetics in Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot 76100, Israel.
Biomacromolecules. 2022 May 9;23(5):2098-2105. doi: 10.1021/acs.biomac.2c00099. Epub 2022 Mar 15.
Cellulose nanocrystals (CNCs) are composed of chiral cellulose units, which form chiral nematic liquid crystals in water that, upon drying, self-assemble to more complex spiral chiral sheets. This secondary structure arrangement is found to change with an external magnetic or electric field. Here, we show that one of the basic organization driving forces is electron spin, which is produced as the charge redistributes in the organization process of the chiral building blocks. It is important to stress that the electron spin-exchange interactions supply the original driving force and not the magnetic field per se. The results present the first utilization of the chiral-induced spin selectivity (CISS) effect in sugars, enabling one to regulate the CNC bottom-up fabrication process. Control is demonstrated on the organization order of the CNC by utilizing different magnetization directions of the ferromagnetic surface. The produced spin is probed using a simple Hall device. The measured Hall resistance shows that the CNC sheets' arrangement is affected during the first four hours as long as the CNC is in its wet phase. On introducing the 1,2,3,4-butanetetracarboxylic acid cross-linker into the CNC sheet, the packing density of the CNC helical structure is enhanced, presenting an increase in the Hall resistance and the chiral state.
纤维素纳米晶体(CNC)由手性纤维素单元组成,在水中形成手性向列液晶,干燥后自组装成更复杂的螺旋手性片。这种二级结构排列被发现会随着外磁场或电场而改变。在这里,我们表明,其中一个基本的组织驱动力是电子自旋,它是在手性构建块的组织过程中电荷重新分布产生的。重要的是要强调,电子自旋交换相互作用提供了原始驱动力,而不是磁场本身。研究结果首次利用了糖中的手性诱导自旋选择性(CISS)效应,从而能够调节 CNC 的自下而上制造过程。通过利用铁磁表面的不同磁化方向来证明对 CNC 组织顺序的控制。使用简单的霍尔器件探测产生的自旋。测量的霍尔电阻表明,只要 CNC 处于湿相,在最初的四个小时内,CNC 片的排列就会受到影响。在 CNC 片上引入 1,2,3,4-丁烷四羧酸交联剂后,CNC 螺旋结构的堆积密度增强,呈现出霍尔电阻和手性状态的增加。