Zhangkai Cui,Hongjian Lu
Zhangkai Cui
Amines, ubiquitous both in nature and synthetic molecules, have long been regarded as static end points in organic synthesis. Unlocking their potential as distinct reactive handles for molecular editing represents a profound shift in synthe...
Indium-based colloidal quantum dots for photocatalytic applications: advances and perspectives [0.03%]
基于铟的胶体量子点在光催化应用中的进展和前景展望
Yixiao Huang,Jianguo Tang,Zhengquan Li et al.
Yixiao Huang et al.
Indium-based quantum dots (InQDs), including both III-V (e.g., InP and InAs) and I-III-VI (e.g., CuInS2, CuInSe2, and AgInS2) families, have attracted growing attention as environmentally friendly alternatives to traditional Cd- and Pb-base...
Spin polarization and chemical catalysis: what we know, what works, and what's next [0.03%]
自旋极化与化学催化:已有成果、成功案例及未来展望
Junxian Liu,Ting Liao,Zhongfang Chen et al.
Junxian Liu et al.
Spin polarization, an intrinsic electronic degree of freedom, has emerged as a transformative lever in catalysis, offering new avenues to address challenges in environmental pollution control, renewable energy generation, and modern chemica...
Strong exciton coupling: a practical toolbox for computing interaction energies, wavefunctions, and optical spectra [0.03%]
强激子耦合:计算相互作用能量、波函数和光学光谱的实际工具箱
Rasmus Ringström,S Rasoul Hashemi,Yuanxin Liang et al.
Rasmus Ringström et al.
The perceived colour and photophysical properties of organic dyes depend not only on their chemical structure, but also how they pack together. When two dyes approach one another, the transition dipole moments associated with their molecula...
An overview of reaction outcome prediction with physics-based and data-driven methods [0.03%]
基于物理和数据驱动的反应结果预测方法概述
Joonyoung F Joung,Nicholas Casetti,Priyanka Raghavan et al.
Joonyoung F Joung et al.
The prediction of reaction outcomes is a longstanding challenge in chemistry, with the ability to do so serving as a direct reflection of our understanding of chemical reactivity. Accurately predicting reaction products is crucial not only ...
Intelligent catalysis: on-demand dynamic self-optimization via responsive feedback [0.03%]
智能催化:具有响应性反馈的动态自优化(按需)
Linbo Jiang,Shichun Mu
Linbo Jiang
Catalysis has become a critical pillar for realizing comprehensive and sustainable social development. However, due to the complex and ever-changing external environmental stimuli along with the continuously evolving internal structures, th...
Switchable and biodegradable nanostructures for safe and precise tumor diagnostics [0.03%]
用于安全精确肿瘤诊断的可切换和生物降解的纳米结构
Rebeka Rita Reszegi,Wenyao Zhen,Xiaoyuan Chen et al.
Rebeka Rita Reszegi et al.
Nanostructures provide a programmable platform for precision imaging by integrating physical, chemical and biological functionalities within a single system. Switchable (OFF-ON) and biodegradable nanostructures are a transformative class of...
Pore engineering in crystalline frameworks: from MOF "chemistry" to HOF "mechanics" for advanced drug delivery [0.03%]
晶态框架材料中的孔道工程:“化学”与“力学”的异曲同工之妙——金属有机框架和氢键有机框架的药物传输性能研究
Ke Jiang,Zhining Yuan,Ling Zhang et al.
Ke Jiang et al.
Crystalline porous materials are orchestrating a paradigm shift in precision medicine. Prototypical metal-organic frameworks (MOFs) define the realm of "pore chemistry" by leveraging compact, thermodynamically stable coordination backbones ...
Shengqiang Liu,Leipeng Li,Bing Chen et al.
Shengqiang Liu et al.
Correction for 'Chromium-activated phosphors: from theory to applications' by Shengqiang Liu et al., Chem. Soc. Rev., 2026, 55, 1954-1998, https://doi.org/10.1039/D5CS00957J.
Published Erratum
Chemical Society reviews. 2026 May 13. DOI:10.1039/d6cs90040b 2026
Correction: From solar cells to memristors: halide perovskites as a platform for neuromorphic electronics [0.03%]
更正:从太阳能电池到忆阻器:卤化物钙钛矿作为神经形态电子学的平台
Natalia Yantara,Xuechao Xing,Divyam Sharma et al.
Natalia Yantara et al.
Correction for 'From solar cells to memristors: halide perovskites as a platform for neuromorphic electronics' by Natalia Yantara et al., Chem. Soc. Rev., 2026, 55, 2145-2228, https://doi.org/10.1039/D5CS01222H.
Published Erratum
Chemical Society reviews. 2026 May 14. DOI:10.1039/d6cs90041k 2026