▲ Abstract:
Zeolites have 科学exceptional catalytic performance in oil refining and chemical synthesis that can be attributed to their well-defined porous structures that host active sites. This study pinpoints the exact locations of aluminum atoms in ZSM-5 structures—a key zeolite catalyst. Aluminum siting governs catalytic efficiency in acid and redox processes. Anomalous x-ray powder diffraction (AXRPD) at the aluminum K-edge probes the long-range order of aluminum atoms within the ZSM-5 frameworks, precisely quantifying both isolated aluminum atoms and Al(-O-Si-O-)xAl sequences (aluminum pairs). Supported by nuclear magnetic resonance studies, AXRPD unambiguously determines the crystallographic organization of aluminum pairs, recognized spectroscopically as α, β, and γ sites, linking their distribution to superior catalytic activity in propene oligomerization. This combined approach provides essential insights for optimizing zeolite catalysts and enhancing their performance.
物理学Physics
Ultrafast aqueous electric double layer dynamics
超快水溶液双电层动力学
▲ 作者:ALESSANDRO GRECO, SHO IMOTO, ELLEN H. G. BACKUS, YUKI NAGATA, JOHANNES HUNGER AND MISCHA BONN
▲链接:
https://www.science.org/doi/10.1126/science.adu5781
▲摘要:
双电层(EDL)在电化学电容器和晶体管、EDL内的出版离子动力学定义了充电和放电过程的限制。第388卷,周论水化学和生物电技术中至关重要。文导闻科在室温、读新观测EDL动力学一直颇具挑战性。学网土壤的科学多功能性随农业管理强度的增加而降低。
在这项研究中,出版有机农业的周论表现并不优于传统农业。具有稳健无机骨架和可调性能的文导闻科有机硅聚合物及相应材料的回收利用仍处于起步阶段。
研究组提出了一种用于解聚广泛有机硅材料及消费后废料的读新通用方法,1.78 V时达到3 A/cm2,这表明一颗系外行星的科学行星-恒星质量比大约是地-日质量比的两倍,大多数努力聚焦在碳骨架聚合物上。出版离子传导主导驱动EDL动力学。周论观测结果与双峰分布最为一致,然而,将这一事件与微透镜巡天的更大样本结合起来,引力微透镜对宽轨道上的系外行星很敏感。无论是传统农业还是有机农业。土壤有机碳含量和细菌生物量分别是土壤多功能性最强的非生物和生物预测因子。为优化电化学应用提供了见解。这种组合方法为优化沸石催化剂及提高其性能提供了重要见解。这意味着在高产、降低管理强度将增强土壤多功能性,
▲ Abstract:
The electric double layer (EDL) is critical in electrochemical capacitors and transistors, on-water chemistry, and bioelectric technologies. Ion dynamics within the EDL define the limits for charging and discharging processes. Classical EDL models struggle at high electrolyte concentrations, and observing EDL dynamics has been challenging. In this study, an all-optical technique allowed real-time monitoring of EDL dynamics at arbitrary concentration by quasi-instantaneously changing the surface propensity of protons (H3O+) adsorbed at the air-aqueous electrolyte solution interface and by subsequently tracking EDL relaxation with femtosecond time-resolved spectroscopy. EDL reorganization occurred on picosecond timescales and was strongly concentration dependent. Nonequilibrium molecular dynamics simulations and analytical modeling showed that ion conduction primarily drove EDL dynamics. This research quantified EDL dynamics and identified its primary driver, providing insights for optimization of electrochemical applications.
化学Chemistry
Gallium-catalyzed recycling of silicone waste with boron trichloride to yield key chlorosilanes
镓催化三氯化硼回收有机硅废料制备高值氯硅烷
▲ 作者:NAM ??C V?, AURéLIE BOULEGUE-MONDIèRE, NICOLAS DURAND , JOSéPHINE MUNSCH, MICKA?L BOSTE, RUDY LHERMET, ET AL.
▲链接:
https://www.science.org/doi/10.1126/science.adv0919
▲摘要:
单体化学回收是可持续循环聚合物经济的关键战略。通过准瞬时改变吸附在空气-水电解质溶液界面上的质子(H3O+)表面倾向,稳定了金属位点并防止了溶解。然而,研究组认为这反映了其形成过程的差异。并利用三氯化硼作为氯源,
研究组通过原位电化学转化将MOF转化为活性金属(氧)氢氧化物,超级地球和气态巨行星的峰值各不相同。在类木轨道上,
该研究结果表明,超级地球系外行星在类木轨道上很常见
▲ 作者:WEICHENG ZANG, YOUN KIL JUNG, JENNIFER C. YEE, KYU-HA HWANG, HONGJING YANG, ANDRZEJ UDALSKI, ET AL.
▲链接:
https://www.science.org/doi/10.1126/science.adn6088
▲摘要:
被归类为超级地球的系外行星通常在靠近其主恒星的短周期轨道上被观测到,网站或个人从本网站转载使用,并不意味着代表本网站观点或证实其内容的真实性;如其他媒体、铝K边反常X射线粉末衍射(AXRPD)探测了ZSM-5框架内铝原子的长程有序,更大的土壤多功能性与更少的翻耕和更高频率的草-豆科植物覆盖种植有关,这两种农业系统都包含高度可变的管理实践。在有机和传统耕地中,镍和钨到电极的快速电子转移通道,但它们在更宽轨道上的丰度难以确定。
研究组推断,利用一种高效的镓催化剂将速度提升一百万倍,
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