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1Biodegradable mineralized collagen plug for the reconstruction of craniotomy burr‐holes:A report of three cases显示文摘Objectives: In this case report, we describe the design, fabrication and clinical outcomes of a novel bioresorbable, mineralized collagen burr‐hole plug for the reconstruction of craniotomy burr‐holes. Methods: Mineralized collagen burr‐hole plugs were fabricated via a biomimetic mineralization process. The biomimetic mineralized collagen has a similar chemical composition and microstructure to natural bone tissue, thereby possessing good biocompatibility and osteoconductivity. The mineralized collagen burr‐hole plugs were implanted into three patients, and clinical outcomes were evaluated at one‐year follow‐ups. Results: All bone defects healed very well using the mineralized collagen burr‐hole plugs, and there were no adverse reactions at the surgical sites. Conclusions: The clinical outcomes indicated that the mineralized collagen was effective for reconstructing burr‐holes in the skull after craniotomy.Zhiye Qiu Yuqi Zhang Ziqiang Zhang Tianxi Song Fuzhai Cui 2015Translational Neuroscience and Clinics2015,1,1:13
2A high-strength mineralized collagen bone scaffold for large-sized cranial bone defect repair in sheep显示文摘Large-sized cranial bone defect repair presents a great challenge in the clinic.The ideal cranioplasty materials to realize the functional and cosmetic recovery of the defect must have sufficient mechanical support,excellent biocompatibility,good osseointegration and biodegradability as well.In this study,a high-strength mineralized collagen(MC)bone scaffold was developed with biomimetic composition,microstructure and mechanical properties for the repair of sheep largesized cranial bone defects in comparison with two traditional cranioplasty materials,polymethyl methacrylate and titanium mesh.The compact MC scaffold showed no distinct pore structure and therefore possessed good mechanical properties.The strength and elastic modulus of the scaffold were much higher than those of natural cancellous bone and slightly lower than those of natural compact bone.In vitro cytocompatibility evaluation revealed that the human bone marrow mesenchymal stem cells(hBMSC)had good viability,attachment and proliferation on the compact MC scaffold indicating its excellent biocompatibility.An adult sheep cranial bone defect model was constructed to evaluate the performances of these cranioplasty materials in repairing the cranial bone defects.The results were investigated by gross observation,computed tomography scanning as well as histological assessments.The in vivo evaluations indicated that compact MC scaffold showed notable osteoconductivity and osseointegration with surrounding cranial bone tissues by promoting bone regeneration.Our results suggested that the compact MC scaffold has a promising potential for large-sized cranial bone defect repair.Shuo Wang Zhijun Zhao Yongdong Yang Antonios G.Mikos Zhiye Qiu Tianxi Song Fuzhai Cui XiumeiWang Chunyang Zhang 2018Regenerative Biomaterials2018,5,5:9
3Highly ordered graphene architectures by duplicating melamine sponges as a three-dimensional deformation- tolerant electrode显示文摘在这研究,宏观的包 graphene 的三聚氰胺泡沫(MF-G ) 被模板 MF 的 layer-by-layer (LBL ) 制作把 graphene 氧化物用作积木的汇编,由处理答案的减小列在后面。由简明地从 MF 复制像海绵的、高度订的三维的体系结构,有互连的基于 graphene 的脚手架和悦耳的 nanostructure 的产生 MF-G 为有效精力存储作为可压缩的、柔韧的电极被探索。pseudocapacitive polypyrrole (PPy ) 的薄层然后被依附,导致 MF-G-PPy 第三的合成海绵的一种明确的 core-double-shell 配置并且在 MF-G 上一致地涂。同样装配的设备展出了 supercapacitor 性能的改进,与解决这四的系列的 427 Ff 的一个高特定的电容哼很好。为 Chr,咩, BaP,和 BbF 的察觉(LOD ) 的限制是 13.0, 8.64, 0.16,和 7.68 ? g ? kg 1, 分别地。在为 Chr,咩, BaP,和 BbF 的各种各样的油样品的恢复作为第二重要灰尘 emitter 是 86.2d 吗??Le Li Kai Wang Zhaoqi Huang Chao Zhang Tianxi Liu 2016Nano Research2016,9,10:7
4Polymer matrix wave-transparent composites:A review显示文摘With the rapid development of electronic information technology,antenna systems in the fields of aviation,aerospace,transportation,and 5 G communication services are becoming more and more intensive and accurate.Polymer matrix wave-transparent composites with lightweight,low dielectric constant(∈)and dielectric loss tangent(tanδ),high temperature resistance,and excellent mechanical properties are urgently needed in order to ensure high-fidelity transmission of electromagnetic wave and protect antenna systems from external interference.This review introduces the wave transmission mechanism,key compositions(polymer matrix&reinforced fibers),and several typical testing methods for dielectric properties of polymer matrix wave-transparent composites,mainly elaborates the latest research progress and achievements of polymer matrix wave-transparent composites from polymer matrix,reinforced fibers and their surface functionalization methods,and presents the key scientific and technical problems that need to be solved urgently in the application of polymer matrix wave-transparent composites in the antenna systems.Finally,the future development trends and application prospects of the polymer matrix wave-transparent composites are also proposed.Lin Tang Junliang Zhang Yusheng Tang Jie kong Tianxi Liu Junwei Gu 2021Journal of Materials Science & Technology2021,,16:6
5A hybrid carbon aerogel with both aligned and interconnected pores as interlayer for high-performance lithium-sulfur batteries显示文摘在硫电极上创造的 polysulfide 种类的可溶的性质严重地妨碍了锂硫(Li-S ) 的电气化学的表演电池。套住并且抛锚的 polysulfides 为克服这个问题正在答应途径。在这个工作,有排列并且相连的毛孔的机械地柔韧的、电子上传导性的混合的碳 aerogel (HCA ) 为 Li-S 电池作为夹层被创造并且调查。层次 cross-linked 网络由表和碳 nanotubes 能作为一张因特网扮演捕获 polysulfide 的 graphene 构造了,当在 aerogel 内的 microand nano 毛孔能便于电解质的快穿入和锂离子的快速的运输时。作为唯一的结构的优点和活跃材料的体积变化的优秀住所, 1,309 mAhMingkai Liu Zhibin Yang Hao Sun Chao Lai Xinsheng Zhao Huisheng Peng Tianxi Liu 2016Nano Research2016,9,12:6
63D Printed Integrated Gradient-Conductive MXene/CNT/Polyimide Aerogel Frames for Electromagnetic Interference Shielding with Ultra-Low Reflection显示文摘Construction of advanced electromagnetic interference(EMI)shielding materials with miniaturized,programmable structure and low reflection are promising but challenging.Herein,an integrated transition-metal carbides/carbon nanotube/polyimide(gradient-conductive MXene/CNT/PI,GCMCP)aerogel frame with hierarchical porous structure and gradient-conductivity has been constructed to achieve EMI shielding with ultra-low reflection.The gradient-conductive structures are obtained by continuous 3D printing of MXene/CNT/poly(amic acid)inks with different CNT contents,where the slightly conductive top layer serves as EM absorption layer and the highly conductive bottom layer as reflection layer.In addition,the hierarchical porous structure could extend the EM dissipation path and dissipate EM by multiple reflections.Consequently,the GCMCP aerogel frames exhibit an excellent average EMI shielding efficiency(68.2 dB)and low reflection(R=0.23).Furthermore,the GCMCP aerogel frames with miniaturized and programmable structures can be used as EMI shielding gaskets and effectively block wireless power transmission,which shows a prosperous application prospect in defense industry and aerospace.Tiantian Xue Yi Yang Dingyi Yu Qamar Wali Zhenyu Wang Xuesong Cao Wei Fan Tianxi Liu 2023Nano-Micro Letters2023,15,3:5
7Recognition of methylated DNA by TAL effectors显示文摘DongDeng PingYin ChuangyeYan XiaojingPan XinqiGong ShiqianQi TianXie MagdyMahfouz Jian-KangZhu NiengYan YigongShi 2012Cell Research2012,22,10:4
8Skull repair materials applied in cranioplasty: History and progress显示文摘The skull provides protection and mechanical support, and acts as a container for the brain and its accessory organs. Some defects in the skull can fatally threaten human life.Many efforts have been taken to repair defects in the skull, among which cranioplasty is the most prominent technique. To repair the injury, numerous natural and artificial materials have been adopted by neurosurgeons. Many cranioprostheses have been tried in the past decades, from autoplast to bioceramics. Neurosurgeons have been evaluating their advantages and shortages through clinical practice. Among those prostheses, surgeons gradually prefer bionic ones due to their marvelous osteoconductivity,osteoinductivity, biocompatibility, and biodegradability. Autogeneic bone has been widely recognized as the 'gold standard' for renovating large-sized bone defects. However, the access to this technique is restricted by limited availability and complications associated with its use. Many metal and polymeric materials with mechanical characteristics analogous to natural bones were consequently applied to cranioplasty. But most of them were unsatisfactory concerning osteoconductiion and biodegradability owe to their intrinsic properties. With the microstructures almost identical to natural bones, mineralized collagen has biological performance nearly identical to autogeneic bone, such as osteoconduction. Implants made of mineralized collagen can integrate themselves into the newly formed bones through a process called 'creeping substitution'. In this review, the authors retrospect the evolution of skull repair material applied in cranioplasty. The ultimate skull repair material should have microstructure and bioactive qualities that enable osteogenesis induction and intramembranous ossification.Qingsheng Yu Lin Chen Zhiye Qiu Yuqi Zhang Tianxi Song Fuzhai Cui 2017Translational Neuroscience and Clinics2017,3,1:4
9A review on hybridization modification of graphene and its polymer nanocomposites显示文摘Recently,graphene has attracted numerous interests from both fundamental and applied fields due to its excellent mechanical,thermal,electrical conductivity and other novel properties.This review gives an overview of recent progress on hybridization modifications of graphene with carbon nanomaterials.Some example applications of graphene-based nanohybrids in polymer composites,optical and conducting materials,high performance electrolyte materials and as well as other functional materials are summarized and discussed.ZHANG Chao LIU TianXi 2012Chinese Science Bulletin2012,57,23:4
10Hierarchical graphene@MXene composite foam modified with flower-shaped FeS for efficient and broadband electromagnetic absorption显示文摘Developing high-performance broadband microwave absorption material becomes an urgent concern in the field of electromagnetic protection.In this work,an ultralight magnetic composite foam was con-structed by electrostatic self-assembly of MXene on the surface of graphene skeletons,and subsequent hydrothermal anchoring of flower-shaped FeS clusters.Under the synergistic effect of MXene coating in-creasing conductive loss and FeS clusters improving magnetic loss,the rational construction of hierarchi-cal impedance structure in foam can effectively promote the entrance and consumption of more incident electromagnetic waves.The minimum reflection loss(RL min)reaches-47.17 dB at a thickness of 4.78 mm,and the corresponding effective absorption bandwidth(EAB)is up to 6.15 GHz.More importantly,the microwave absorption performance of composite foam can be further optimized by controlling the load-ing of MXene and thermal treatment at a low temperature.The maximum of EAB for GMF-300 can be extended to an unprecedented value of 11.20 GHz(covering 6.10-17.30 GHz).Shuangshuang Li Xinwei Tang Xu Zhao Shijie Lu Jiangtao Luo Zheyuan Chai Tiantian Ma Qianqian Lan Piming Ma Weifu Dong Zicheng Wang Tianxi Liu 2023Journal of Materials Science & Technology2023,,2:4
11Lotus root-like porous carbon nanofiber anchored with CoP nanoparticles as all-pH hydrogen evolution electrocatalysts显示文摘高度活跃、划算的氢进化反应的发展(她的) 催化剂具有到处理全球精力问题的重要重要性。这里,三维的互连的多孔的碳 nanofiber (PCNF ) 膜作为对活跃的钴磷化物(警察) 的支持被发展了并且利用 nanoparticles。她的催化剂有的这讲道理地设计的 self-supported 一朵莲花像根的多信道的结构,它在常规 CNF 上提供几个内在的优点。纵的隧道能存储电解质并且在催化剂以内保证快离子和集体运输。另外,外部、内部的碳上的 mesopores 围提高离子和电解质的集体移植到她的积极警察 nanoparticles,因此弄短离子运输距离并且增加在电解质和警察 nanoparticles 之间的接触区域。而且,传导性的碳底层由形成一个综合传导性的网络提供快电子转移小径,它进一步快保证她的动力学。作为结果, CoP/PCNF composites 展览低发作潜力(在 0.5 M H 2 那么 4, 1 M PBS,和 1 M KOH,分别地) 。CoP/PCNF composites 是有希望的这些调查结果表演自食其力、高效 all-pH 范围她的催化剂。Hengyi Lu Wei Fan Yunpeng Huang Tianxi Liu 2018Nano Research2018,11,3:4
12Highly flexible and compressible polyimide/silica aerogels with integrated double network for thermal insulation and fre-retardancy显示文摘The materials with thermal insulating and fre-retardant properties are highly demanded for architectures to improve the energy efficiency.The applications of conventional inorganic insulating materials such as silica aerogels are restricted by their mechanical fragility and organic insulating materials are either easily ignitable or exhibit unsatisfactory thermal insulation performance.Here,we report an organic/inorganic composite aerogel with integrated double network structure,in which silica constituent homogeneously distribute in the anisotropic polyimide nanofber aerogel matrix and strong interfacial effect is formed between two components.The integrated binary network endows the polyimide/silica composite aerogels with outstanding compressibility and flexibility even with a high inorganic content of 60%,which can withstand 500 cyclic fatigue tests at a compressive strain of 50%in the radial direction.The resulting composite aerogel exhibits a combination of outstanding insulating performance with a low thermal conductivity(21.2 mW m^(-1)K^(-1))and excellent resistance to a 1200℃flame without disintegration.The high-performance polyimide/silica aerogels can decrease the risk brought by the collapse of reinforced concrete structures in a fre,demonstrating great potential as efficient building materials.Jing Tian Yi Yang Tiantian Xue Guojie Chao Wei Fan Tianxi Liu 2022Journal of Materials Science & Technology2022,,10:4
13Electroactive polymeric nanofibrous composite to drive in situ construction of lithiophilic SEI for stable lithium metal anodes显示文摘Uncontrolled lithium dendrite growth hinders the practical application of lithium metal batteries(LMBs).Herein,we report a novel Li^(+) flux distributor achieved by placing an electroactive polyvinylidene fluoride/polymethyl methacrylate(PVDF/PMMA)composite nanofiber interlayer on a current collector,inducing uniform lithium deposition to mitigate the dendrite problem.Specifically,the released PMMA reacts with Liþto form abundant C–O–Li bonds and generate in situ a stable lithiophilic PMMA-Li solid electrolyte interphase layer.Theoretical calculations reveal that polar C–F groups in the PVDF framework and lithiophilic PMMA-Li provide homo-dispersed Li^(+) migration pathways with low energy barriers.Consequently,uniform Li nucleation is achieved at the molecular level,resulting in ultrahigh cycling stability with dendrite-free Li deposition at 5 mA cm^(-2) and 5 mAh cm^(-2)for over 500 h.The PVDF/PMMA||Li||LiFePO_(4)(LFP)full cell presents an increased rate capacity of 110 mAh g^(-1) at 10 C.In addition,a soft-package battery demonstrates a high energy density of 289 Wh kg^(-1).This work provides a facile design for stable lithium metal anodes to promote the practical use of LMBs and other alkali metal batteries.Ai-Long Chen Nan Shang Yue Ouyang Lulu Mo Chunyang Zhou Weng Weei Tjiu Feili Lai Yue-E Miao Tianxi Liu 2022eScience2022,2,2:3
14A new method to standardize CBCT for quantitative evaluation of alveolar ridge preservation in the mandible:a case report and review of the literature显示文摘Cone-beam computerized tomography(CBCT)is an effective technique for assessment of changes to the alveolar ridge(AR).However,its accuracy and reliability could be improved by standardization of imaging positions to remain unchanged during measurements.In this study,an alveolar ridge preservation procedure was performed on a left third molar(38)socket by filling it with a radiotransparent synthetic bone graft,mineralized collagen(MC).Photographic,X-ray and CBCT images were captured before and 3,6 and 12 months after surgery.A new method was developed to standardize CBCT for quantitative evaluation.Obtained CBCT images showed good comparability.The post-extraction alveolar width and height were both over 95%of the original values,but some resorption of the lingual bone wall(>50%)and inter-crestal bone(>30%).It is concluded that an effective positional standardization method was developed for CBCT assessment of AR dimensional changes in the posterior mandible.The use of MC in combination with a collagen membrane improved dimensional preservation of the AR.Yang Xia Lizhe Xie Yi Zhou Tianxi Song Feimin Zhang Ning Gu 2015Regenerative Biomaterials2015,2,4:3
15First experimental constraints on WIMP couplings in the effective field theory framework from CDEX显示文摘We present weakly interacting massive particles(WIMPs) search results performed using two approaches of effective field theory from the China Dark Matter Experiment(CDEX), based on the data from both CDEX-1B and CDEX-10 stages. In the nonrelativistic effective field theory approach, both time-integrated and annual modulation analyses were used to set new limits for the coupling of WIMP-nucleon effective operators at 90% confidence level(C.L.) and improve over the current bounds in the low mχregion. In the chiral effective field theory approach, data from CDEX-10 were used to set an upper limit on WIMP-pion coupling at 90% C.L. We for the first time extended the limit to the m_(χ)<6 GeV/c^(2) region.Yi Wang Zhi Zeng Qian Yue LiTao Yang KeJun Kang YuanJing Li Mehment Agartioglu HaiPeng An JianPing Chang JingHan Chen YunHua Chen JianPing Cheng Cheng Yi Chiang WenHan Dai Zhi Deng ChangHao Fang XinPing Geng Hui Gong QiuJu Guo XuYuan Guo HongJian He Li He ShengMing He JinWei Hu TuChen Huang HanXiong Huang HaiTao Jia LiPing Jia Xi Jiang HauBin Li JianMin Li Jin Li MingXuan Li RenMingJie Li Xia Li YuLan Li Bin Liao FongKay Lin ShinTed Lin ShuKui Liu YanDong Liu Yu Liu YuanYuan Liu ZhongZhi Liu Hao Ma YuCai Mao QiYuan Nie JinHua Ning Hui Pan NingChun Qi Jie Ren XiChao Ruan ChangSong Shang Vivek Sharma Ze She Lakhwinder Singh Monoj Kumar Singh TianXi Sun ChangJian Tang WeiYou Tang Yang Tian GuangFu Wang Li Wang Qing Wang Yu Chen Wang YunXiang Wang Zhen Wang Henry Tsz-King Wong ShiYong Wu YuCheng Wu HaoYang Xing Yin Xu Tao Xue YuLu Yan Nan Yi ChunXu Yu HaiJun Yu JianFeng Yue Ming Zeng BingTao Zhang Lei Zhang FengShou Zhang ZhenYu Zhang KangKang Zhao MingGang Zhao JiFang Zhou ZuYing Zhou JingJun Zhu 2021Science China(Physics,Mechanics & Astronomy)2021,64,8:3
16Free-Standing Silver Nanocube/Graphene Oxide Hybrid Paper for Surface-Enhanced Raman Scattering显示文摘提高表面的拉曼光谱学(重量的单位) 作为一个强大的分析工具获得了广泛的注意。尽管有在重量的单位底层的设计的许多努力,它为与长期的稳定性和可再现的重量的单位信号创造通用底层仍然是大挑战。在这个工作, Ag nanocubes 和 graphene 氧化物(去) 暂停被混合形成稳定的溶液,进一步的真空过滤了获得一份自立的混合报纸。因为 Ag nanocubes 的 synergistic 效果, Ag/GO 混合报纸展出优秀重量的单位活动并且去表。去表能为支持 Ag nanocubes 充当两重量的单位改进底层和框架。而且,去表能为延长生活时间重量的单位在周围的状况下面保护 Ag nanoparticles 免受氧化的伤害底层。而且,我们表明自立、灵活的 Ag/GO 混合的纸的使用在水的系统启用 analytes 的踪迹数量的直接、即时、可靠的察觉。这新奇重量的单位底层被期望在即时分析被使用并且在材料和生命科学为有用应用扩展重量的单位的灵活性。Wei Fan Miao Yue-E Xingyi Ling Tianxi Liu 2016Chinese Journal of Chemistry2016,34,1:3
17Annual Report of CEFR in 2017显示文摘China Experimental Fast Reactor(CEFR)is apool-type structure reactor with sodium-sodiumwater loops,the thermal power and electrical power is 65 MW and 20 MW.The initial fuel is UO2,and CEFR has a passive residual heat removal system.In 2017,the reactor was in the cold shutdown operation state.The overhaul workLIU Shangbo MA Yonggang WANG Tianxi 2017Annual Report of China Institute of Atomic Energy2017,,1:3
18Ultralight and ordered lamellar polyimide-based graphene foams with efficient broadband electromagnetic absorption显示文摘The development of high-performance microwave absorption materials with strong absorption capacity and broad bandwidth is highly desirable in the field of electromagnetic pollution protection.Herein,ultralight polyimide-based graphene foam with ordered lamellar structure is precisely designed and controllably constructed by bidirectional freezing process.More lamellar interfaces formed inside the foam per unit volume effectively facilitate the layer-by-layer dissipation for the vertical incident electromagnetic waves,thereby endowing the foam with efficient broadband electromagnetic absorption performance.More importantly,electromagnetic absorption performance can be controllably adjusted by optimizing impedance distribution and microstructure of skeletons.As a result,the optimized foam with an ultralow density of 9.10 mg/cm^(3)presents a minimum reflection loss value of-61.29 dB at 9.25 GHz and an effective absorption bandwidth of 5.51 GHz(7.06-12.57 GHz,covering the whole X band) when the thickness is 4.75 mm.Yawei Zhang Shuangshuang Li Xinwei Tang Wei Fan Qianqian Lan Le Li Piming Ma Weifu Dong Zicheng Wang Tianxi Liu 2022Journal of Materials Science & Technology2022,,7:3
19Simultaneous growth of carbon nanotubes on inner/outer surfaces of porous polyhedra:Advanced sulfur hosts for lithium-sulfur batteries显示文摘Metal-organic framework (MOF)-derived functional carbon matrices have recently attracted considerable attention as energy-storage materials.However,the development of MOF-derived carbon materials with hierarchical structures,capable of thoroughly preventing the 'shuttling' of polysulfides,is still a major challenge.Herein,we synthesized cobalt nanoparticle-containing porous carbon polyhedra with in situ grown N-doped carbon nanotube (CNT) backbone (NCCNT-Co),using zeolitic imidazolate framework-67 (ZIF-67) as starting material.The obtained NCCNT-Co,with interconnected N-doped CNTs on both inner and outer surfaces,possesses an integrated conductive network,which can further accelerate the transport of electrons/ions inside the whole sulfur cathode.The mesoporous structure derived from the ZIF-67 matrix and the densely immobilized CNTs,coupled with the homogeneously doped N atoms and Co nanoparticles,can efficiently trap lithium polysulfides (LiPSs) by physical confinement and chemical interactions.Furthermore,the hierarchical structure of the porous carbon polyhedra enables a high sulfur loading of up to 76 wt.% and can also buffer the volume changes of active sulfur during the lithiation process.As a result,the NCCNT-Co-S cathode delivers a high initial specific capacity of 1,300 mAh·g-1 at 0.1 C,along with a high capacity of 860 rnAh·g-1 after 500 cycles at 1 C,with an extremely low capacity decay of 0.024% per cycle.Hengyi Lu Chao Zhang Youfang Zhang Yunpeng Huang Mingkai Liu Tianxi Liu 2018Nano Research2018,11,12:3
20Structural engineering of cathodes for improved Zn-ion batteries显示文摘Aqueous zinc-ion batteries(ZIBs) are attracting considerable attention because of their low cost,high safety and abundant anode material resources.However,the major challenge faced by aqueous ZIBs is the lack of stable and high capacity cathode materials due to their complicated reaction mechanism and slow Zn-ion transport kinetics.This study reports a unique 3 D ’flower-like’ zinc cobaltite(ZnCo_(2)O_(4-x)) with enriched oxygen vacancies as a new cathode material for aqueous ZIBs.Computational calculations reveal that the presence of oxygen vacancies significantly enhances the electronic conductivity and accelerates Zn^(2+) diffusion by providing enlarged channels.The as-fabricated batteries present an impressive specific capacity of 148.3 mAh g^(-1) at the current density of 0.05 A g^(-1),high energy(2.8 Wh kg^(-1)) and power densities(27.2 W kg^(-1)) based on the whole device,which outperform most of the reported aqueous ZIBs.Moreover,a flexible solid-state pouch cell was demonstrated,which delivers an extremely stable capacity under bending states.This work demonstrates that the performance of Zn-ion storage can be effectively enhanced by tailoring the atomic structure of cathode materials,guiding the development of low-cost and eco-friendly energy storage materials.Jiajia Huang Yuying Li Ruikuan Xie Jianwei Li Zhihong Tian Guoliang Chai Yanwu Zhang Feili Lai Guanjie He Chuntai Liu Tianxi Liu Dan J.L.Brett 2021Journal of Energy Chemistry2021,30,7:3
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