【无机化学学报】doi: 10.11862/CJIC.20240404
In this study, ZnSnO3/NiO heterostructures were synthesized using a co-precipitation method followed by an annealing process. The gas-sensitive characteristics of the sensors based on these samples were evaluated. The results indicate that the sensor performance was optimized when the molar ratio of Ni to Zn was 1∶2. Specifically, the response values of the ZnSnO3/NiO-2-based sensor to 100 μL·L-1 triethylamine (TEA) gas at 220 ℃ reached 70.6, which were 6.1 times higher than that of the pure ZnSnO3 based sensor. The findings demonstrate that ZnSnO3/NiO heterostructures exhibited not only short response and recovery times (1 s/18 s) but also good gas selectivity, repeatability, and long-term stability. The enhanced sensing mechanism has been investigated in detail.
【大学化学】doi: 10.12461/PKU.DXHX202509131
金属有机化学知识体系庞大,在拔尖计划有机化学教学的有限课时中面临如何取舍、避免信息过载的难题。本文建议本着“少即是多”的理念,以“基础性、衔接性和代表性”为原则进行科学取舍,主要讲授配合物结构特征、基元反应以及5个经典过渡金属催化的反应,以期帮助学生建立基本认知并掌握举一反三的能力,为后续进一步学习和科研训练奠定基础。
【物理化学学报】doi: 10.3866/PKU.WHXB202304037
聚N-异丙基丙烯酰胺(PNIPAm)交联温敏纳米纤维膜作为一种相变温度易于控制的新兴响应性材料,克服了传统PNIPAm块状水凝胶的生产成本高、响应速率慢和PNIPAm非交联温敏纳米纤维耐水性差的缺点,受到广泛研究并应用于智能开关、温度致动器、水油分离、药物、细胞控制释放和伤口敷料等领域。形貌稳定性和快速响应性是温敏纳米纤维膜在重复体积变化过程中最大的挑战,同时也作为评价PNIPAm温敏纳米纤维膜的实用性最重要指标引起了人们广泛的关注。本文全面综述了PNIPAm温敏纳米纤维膜近二十年来国内外的突破性进展和非交联作用下PNIPAm温敏纳米纤维膜的形貌变化和响应性,重点综合分析了物理和化学交联中交联反应类型、交联度、交联时间和交联分子量对PNIPAm温敏纳米纤维膜的形貌稳定性和响应行为的影响,为之后纤维膜的交联处理提供了理论支持,并对PNIPAm温敏纳米纤维膜的发展及应用前景进行了展望。
【物理化学学报】doi: 10.3866/PKU.WHXB202308024
由于电催化剂中的非晶区和结晶区具有不同的物理化学性质,因此非晶化/结晶化工程成为提高电解水催化动力学的重要策略。然而,在微观环境中有效地调控催化剂的结晶度仍然是一个严峻的挑战。本文介绍了一种可调节结晶度的新型CrS/CoS2异质结构,该异质结对氢气析出反应(HER)和氧气析出反应(OER)都具有高效的催化活性。Cr―S―Co键的重新分配引起的d带中心移动有助于调节中间体H*和OOH*在催化剂表面的吸附能力,从而优化HER和OER的决速步骤。在最佳条件下,非晶态CrS和高度结晶的CoS2异质结(A-CrS/HC-CoS2)在HER和OER均表现出优异的催化活性,分别为90.6 mV (10 mA∙cm−2,HER)和370.5 mV (50 mA∙cm−2,OER)。非晶/高晶结构有利于A-CrS/HC-CoS2在水电解过程中的结构和成分演变,因此具有出色的稳定性。作为甲醇辅助节能制氢装置中的双功能催化剂,A-CrS/HC-CoS2仅需1.51 Ⅴ的低槽电压即可达到10 mA∙cm−2的电流密度,证明其是理想的金属基催化剂的候选材料。本研究为双功能过渡金属化合物电催化剂在非晶态/晶态异质结构中通过结晶度调控来提高催化活性和稳定性提供了重要启示。
【无机化学学报】doi: 10.11862/CJIC.20240442
Herein, an FMS/CC composite was successfully fabricated by depositing FeMoS4 onto a pristine carbon fiber cloth (CC) substrate via a facile two-step hydrothermal method. The amorphous nature of the FMS/CC composite endows it with abundant catalytically active sites, thereby accelerating the reduction of I3-. More importantly, the dye-sensitized solar cells (DSSCs) prepared by scraping it on flexible titanium mesh with low resistance had low series resistance (Rs). Electrochemical characterizations revealed that the DSSCs employing the FMS/CC counter electrode achieved a power conversion efficiency (PCE) of ca. 9.51% (surpassing the ca. 8.15% efficiency of the Pt counter electrode), open-circuit voltage (Voc) of ca. 0.79 V, short-circuit current density (Jsc) of ca. 18.31 mA·cm-2, and fill factor (FF) of ca. 0.65. Moreover, after 100 times of cyclic voltammetry (CV) test, the CV curve remainedunchanged, indicating the excellent stability of FMS/CC in the electrolyte containing I3-/I-.
【大学化学】doi: 10.3866/PKU.DXHX202310126
面向化学类(非高分子)专业的高分子化学实验教学发展较为缓慢,亟需紧跟研究前沿,引入新内容。本文总结了近十年的教学改革经验,并以温敏型高分子的制备、溶液性质、光学性能与应用为例,介绍如何通过实验教学内容、实验技术、教学方法等方面的创新,设计符合理科人才培养需求的、契合时代与科学发展的、被学生喜爱与重视的一系列高分子化学实验,以有效解决培养需求与课业负担之间的矛盾,且在不新增开课、课时有限的情况下,加入到化学类专业本科教学体系中,激发学生对学科领域的兴趣,提升学生的探究和创新能力。
