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| 1 | MoS2 as a long-life host material for potassium ion intercalation显示文摘进二维的分层的瞬间 2 的电气化学的钾离子置闰在基于钾的电池在阳极为潜在的应用第一次被学习。X 光检查衍射分析显示设置的钾加重,六角形的 K 0.4 在置闰过程期间形成的瞬间 2, 。尽管有 K +, 瞬间的尺寸, 2 在 200 个周期以后与 97.5% 的能力保留是为重复的钾离子置闰和 de 置闰的一位长寿主人。在 K x + 离子的散开系数 > 瞬间 2 基于 Randles-Sevcik 方程被计算。更高的 K + 置闰比率不仅在瞬间 2, 遇到了慢得多的 K + 散开率而且导致了瞬间 2 减小。这研究证明那金属 dichalcogenides 为新兴的 K 离子,击倒 2, 和 K-S 电池正在答应钾阳极材料。 | Xiaodi Ren Qiang Zhao William D. McCulloch Yiying Wu | 2017 | Nano Research2017,10,4: | 26 |
| 2 | Is sodium percarbonate a good deltamethrin choice in situ remediation of pollution?显示文摘 | Xu Zhang Baigang Ren Shangge Li Xiaodi Qu Huanhuan Yang Shiguo Xu Zongming Ren Qiang Kong Cheng Wang | 2017 | Frontiers of Environmental Science & Engineering2017,11,3: | 1 |
| 3 | Chemical analysis of Astragalus mongholicus polysaccharides and antioxidant activity of the polysaccharides显示文摘 | Hui Yan Yupeng Xie Shiguang Sun Xiaodi Sun Fengxia Ren Qirong Shi Suhui Wang Weidong Zhang Xiumin Li Jing Zhang | 2010 | Carbohydrate Polymers2010,,3: | 1 |
| 4 | Durable semi-crystalline interphase engineering to stabilize high voltage Ni-rich cathode in dilute ether electrolyte显示文摘Ethers are promising electrolyte solvents for secondary Li metal batteries because of their excellent reduction stability.However,their oxidation stability has been mostly relying on the high concentration approach,and limited progress has been made on building effective interphase to protect the cathode from the corrosion of the electrolyte.In this work,we construct a semi-crystalline interfacial layer on the surface of Li(Ni_(0.8)Co_(0.1)Mn_(0.1))O_(2)cathode that can achieve improved electrochemical stability in the highly corrosive chemical environment formed by the decomposition of ether molecules.Different from traditional brittle crystalline interphases,the optimized semi-crystalline layer with low modulus and high ionic conductivity can effectively relieve electrode strain and maintain the integrity of the interface layer.Due to this design,the continuous oxidation decomposition of ether-based electrolytes could be significantly suppressed and the battery shows outstanding cycling stability(84%capacity retention after 300 cycles).This article provides a solution to address the oxidation instability issue of ether-based electrolytes. | Zhuangzhuang Cui Shunqiang Chen Qingshun Nian Yecheng Li Yawei Chen Bing-Qing Xiong Zihong Wang Zixu He Shuhong Jiao Xiaodi Ren | 2023 | Journal of Energy Chemistry2023,,4: | 0 |
| 5 | pH-triggered dynamic erosive small molecule chlorambucil nano-prodrugs mediate robust oral chemotherapy显示文摘Currently,the dynamic erosive small molecule nano-prodrug is of great demand for oral chemotherapy,owing to its precise structure,high drug loading and improved oral bioavailability via overcoming various physiologic barriers in gastrointestinal tract,blood circulation and tumor tissues compared to other oral nanomedicines.Herein,this work highlights the successful development of pH-triggered dynamic erosive small molecule nano-prodrugs based on in vivo significant pH changes,which are synthesized via amide reaction between chlorambucil and star-shaped ortho esters.The precise nano-prodrugs exhibit extraordinarily high drug loading(68.16%),electric neutrality,strong hydrophobicity,and dynamic large-to-small size transition from gastrointestinal pH to tumoral pH.These favorable physicochemical properties can effectively facilitate gastrointestinal absorption,blood circulation stability,tumor accumulation,cellular uptake,and cytotoxicity,therefore achieving high oral relative bioavailability(358.72%)and significant tumor growth inhibition while decreasing side effects.Thus,this work may open a new avenue for robust oral chemotherapy attractive for clinical translation. | Xin Liu Zhexiang Wang Xiaodie Ren Xinyang Chen Jinjin Tao Yuanhui Guan Xuefeng Yang Rupei Tang Guoqing Yan | 2023 | Asian Journal of Pharmaceutical Sciences2023,18,4: | 0 |
| 6 | Concentrated ternary ether electrolyte allows for stable cycling of a lithium metal battery with commercial mass loading high-nickel NMC and thin anodes显示文摘A new concentrated ternary salt ether-based electrolyte enables stable cycling of lithium metal battery(LMB)cells with high-mass-loading(13.8 mg cm^(−2),2.5 mAh cm^(−2))NMC622(LiNi_(0.6)Co_(0.2)Mn_(0.2)O_(2))cathodes and 50μm Li anodes.Termed“CETHER-3,”this electrolyte is based on LiTFSI,LiDFOB,and LiBF4 with 5 vol%fluorinated ethylene carbonate in 1,2-dimethoxyethane.Commer-cial carbonate and state-of-the-art binary salt ether electrolytes were also tested as baselines.With CETHER-3,the electrochemical performance of the full-cell battery is among the most favorably reported in terms of high-voltage cycling stability.For example,LiNi_(x)Mn_(y)Co_(1-x-y)O_(2)(NMC)-Li metal cells retain 80%capacity at 430 cycles with a 4.4 V cut-off and 83%capacity at 100 cycles with a 4.5 V cut-off(charge at C/5,discharge at C/2).According to simulation by density functional theory and molecular dynamics,this favorable performance is an outcome of enhanced coordination between Li^(+)and the solvent/salt molecules.Combining advanced microscopy(high-resolution transmission electron microscopy,scanning electron microscopy)and surface science(X-ray photoelectron spectroscopy,time-of-fight secondary ion mass spectroscopy,Fourier-transform infrared spectroscopy,Raman spectroscopy),it is demonstrated that a thinner and more stable cathode electrolyte interphase(CEI)and solid electrolyte interphase(SEI)are formed.The CEI is rich in lithium sulfide(Li_(2)SO_(3)),while the SEI is rich in Li_(3)N and LiF.During cycling,the CEI/SEI suppresses both the deleterious transformation of the cathode R-3m layered near-surface structure into disordered rock salt and the growth of lithium metal dendrites. | Jun Yang Xing Li Ke Qu Yixian Wang Kangqi Shen Changhuan Jiang Bo Yu Pan Luo Zhuangzhi Li Mingyang Chen Bingshu Guo Mingshan Wang Junchen Chen Zhiyuan Ma Yun Huang Zhenzhong Yang Pengcheng Liu Rong Huang Xiaodi Ren David Mitlin | 2023 | Carbon Energy2023,5,3: | 0 |
| 7 | Self-selective memristor-enabled in-memory search for highly efficient data mining显示文摘Similarity search,that is,finding similar items in massive data,is a fundamental computing problem in many fields such as data mining and information retrieval.However,for large-scale and high-dimension data,it suffers from high computational complexity,requiring tremendous computation resources.Here,based on the low-power self-selective memristors,for the first time,we propose an in-memory search(IMS)system with two innovative designs.First,by exploiting the natural distribution law of the devices resistance,a hardware locality sensitive hashing encoder has been designed to transform the realvalued vectors into more efficient binary codes.Second,a compact memristive ternary content addressable memory is developed to calculate the Hamming distances between the binary codes in parallel.Our IMS system demonstrated a 168energy efficiency improvement over all-transistors counterparts in clustering and classification tasks,while achieving a software-comparable accuracy,thus providing a low-complexity and low-power solution for in-memory data mining applications. | Ling Yang Xiaodi Huang Yi Li Houji Zhou Yingjie Yu Han Bao Jiancong Li Shengguang Ren Feng Wang Lei Ye Yuhui He Jia Chen Guiyou Pu Xiang Li Xiangshui Miao | 2023 | InfoMat2023,5,5: | 0 |