journal
https://read.qxmd.com/read/38758464/regulatable-orthotropic-3d-hybrid-continuous-carbon-networks-for-efficient-bi-directional-thermal-conduction
#1
JOURNAL ARTICLE
Huitao Yu, Lianqiang Peng, Can Chen, Mengmeng Qin, Wei Feng
Vertically oriented carbon structures constructed from low-dimensional carbon materials are ideal frameworks for high-performance thermal interface materials (TIMs). However, improving the interfacial heat-transfer efficiency of vertically oriented carbon structures is a challenging task. Herein, an orthotropic three-dimensional (3D) hybrid carbon network (VSCG) is fabricated by depositing vertically aligned carbon nanotubes (VACNTs) on the surface of a horizontally oriented graphene film (HOGF). The interfacial interaction between the VACNTs and HOGF is then optimized through an annealing strategy...
May 17, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38753176/branch-chain-rich-diisopropyl-ether-with-steric-hindrance-facilitates-stable-cycling-of-lithium-batteries-at-%C3%A2-20%C3%A2-%C3%A2-c
#2
JOURNAL ARTICLE
Houzhen Li, Yongchao Kang, Wangran Wei, Chuncheng Yan, Xinrui Ma, Hao Chen, Yuanhua Sang, Hong Liu, Shuhua Wang
Li metal batteries (LMBs) offer significant potential as high energy density alternatives; nevertheless, their performance is hindered by the slow desolvation process of electrolytes, particularly at low temperatures (LT), leading to low coulombic efficiency and limited cycle stability. Thus, it is essential to optimize the solvation structure thereby achieving a rapid desolvation process in LMBs at LT. Herein, we introduce branch chain-rich diisopropyl ether (DIPE) into a 2.5 M Li bis(fluorosulfonyl)imide dipropyl ether (DPE) electrolyte as a co-solvent for high-performance LMBs at - 20 °C...
May 16, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38753068/leakage-proof-flame-retardant-and-electromagnetic-shield-wood-morphology-genetic-composite-phase-change-materials-for-solar-thermal-energy-harvesting
#3
JOURNAL ARTICLE
Yuhui Chen, Yang Meng, Jiangyu Zhang, Yuhui Xie, Hua Guo, Mukun He, Xuetao Shi, Yi Mei, Xinxin Sheng, Delong Xie
Phase change materials (PCMs) offer a promising solution to address the challenges posed by intermittency and fluctuations in solar thermal utilization. However, for organic solid-liquid PCMs, issues such as leakage, low thermal conductivity, lack of efficient solar-thermal media, and flammability have constrained their broad applications. Herein, we present an innovative class of versatile composite phase change materials (CPCMs) developed through a facile and environmentally friendly synthesis approach, leveraging the inherent anisotropy and unidirectional porosity of wood aerogel (nanowood) to support polyethylene glycol (PEG)...
May 16, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38743342/making-the-complicated-simple-a-minimizing-carrier-strategy-on-innovative-nanopesticides
#4
REVIEW
Wenjie Shangguan, Qiliang Huang, Huiping Chen, Yingying Zheng, Pengyue Zhao, Chong Cao, Manli Yu, Yongsong Cao, Lidong Cao
The flourishing progress in nanotechnology offers boundless opportunities for agriculture, particularly in the realm of nanopesticides research and development. However, concerns have been raised regarding the human and environmental safety issues stemming from the unrestrained use of non-therapeutic nanomaterials in nanopesticides. It is also important to consider whether the current development strategy of nanopesticides based on nanocarriers can strike a balance between investment and return, and if the complex material composition genuinely improves the efficiency, safety, and circularity of nanopesticides...
May 14, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38743294/unveiling-organic-electrode-materials-in-aqueous-zinc-ion-batteries-from-structural-design-to-electrochemical-performance
#5
REVIEW
Dujuan Li, Yuxuan Guo, Chenxing Zhang, Xianhe Chen, Weisheng Zhang, Shilin Mei, Chang-Jiang Yao
Aqueous zinc-ion batteries (AZIBs) are one of the most compelling alternatives of lithium-ion batteries due to their inherent safety and economics viability. In response to the growing demand for green and sustainable energy storage solutions, organic electrodes with the scalability from inexpensive starting materials and potential for biodegradation after use have become a prominent choice for AZIBs. Despite gratifying progresses of organic molecules with electrochemical performance in AZIBs, the research is still in infancy and hampered by certain issues due to the underlying complex electrochemistry...
May 14, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38743205/mxene-c-mwcnt-adhesive-silica-nanofiber-membranes-enhancing-electromagnetic-interference-shielding-and-thermal-insulation-performance-in-extreme-environments
#6
JOURNAL ARTICLE
Ziyuan Han, Yutao Niu, Xuetao Shi, Duo Pan, Hu Liu, Hua Qiu, Weihua Chen, Ben Bin Xu, Zeinhom M El-Bahy, Hua Hou, Eman Ramadan Elsharkawy, Mohammed A Amin, Chuntai Liu, Zhanhu Guo
A lightweight flexible thermally stable composite is fabricated by combining silica nanofiber membranes (SNM) with MXene@c-MWCNT hybrid film. The flexible SNM with outstanding thermal insulation are prepared from tetraethyl orthosilicate hydrolysis and condensation by electrospinning and high-temperature calcination; the MXene@c-MWCNTx:y films are prepared by vacuum filtration technology. In particular, the SNM and MXene@c-MWCNT6:4 as one unit layer (SMC1 ) are bonded together with 5 wt% polyvinyl alcohol (PVA) solution, which exhibits low thermal conductivity (0...
May 14, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38743197/facile-semiconductor-p-n-homojunction-nanowires-with-strategic-p-type-doping-engineering-combined-with-surface-reconstruction-for-biosensing-applications
#7
JOURNAL ARTICLE
Liuan Li, Shi Fang, Wei Chen, Yueyue Li, Mohammad Fazel Vafadar, Danhao Wang, Yang Kang, Xin Liu, Yuanmin Luo, Kun Liang, Yiping Dang, Lei Zhao, Songrui Zhao, Zongzhi Yin, Haiding Sun
Photosensors with versatile functionalities have emerged as a cornerstone for breakthroughs in the future optoelectronic systems across a wide range of applications. In particular, emerging photoelectrochemical (PEC)-type devices have recently attracted extensive interest in liquid-based biosensing applications due to their natural electrolyte-assisted operating characteristics. Herein, a PEC-type photosensor was carefully designed and constructed by employing gallium nitride (GaN) p-n homojunction semiconductor nanowires on silicon, with the p-GaN segment strategically doped and then decorated with cobalt-nickel oxide (CoNiOx )...
May 14, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38700650/tio-2-electron-transport-layer-with-p-n-homojunctions-for-efficient-and-stable-perovskite-solar-cells
#8
JOURNAL ARTICLE
Wenhao Zhao, Pengfei Guo, Jiahao Wu, Deyou Lin, Ning Jia, Zhiyu Fang, Chong Liu, Qian Ye, Jijun Zou, Yuanyuan Zhou, Hongqiang Wang
Low-temperature processed electron transport layer (ETL) of TiO2 that is widely used in planar perovskite solar cells (PSCs) has inherent low carrier mobility, resulting in insufficient photogenerated electron transport and thus recombination loss at buried interface. Herein, we demonstrate an effective strategy of laser embedding of p-n homojunctions in the TiO2 ETL to accelerate electron transport in PSCs, through localized build-in electric fields that enables boosted electron mobility by two orders of magnitude...
May 3, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38698298/efficient-and-stable-inverted-perovskite-solar-modules-enabled-by-solid-liquid-two-step-film-formation
#9
JOURNAL ARTICLE
Juan Zhang, Xiaofei Ji, Xiaoting Wang, Liujiang Zhang, Leyu Bi, Zhenhuang Su, Xingyu Gao, Wenjun Zhang, Lei Shi, Guoqing Guan, Abuliti Abudula, Xiaogang Hao, Liyou Yang, Qiang Fu, Alex K-Y Jen, Linfeng Lu
A considerable efficiency gap exists between large-area perovskite solar modules and small-area perovskite solar cells. The control of forming uniform and large-area film and perovskite crystallization is still the main obstacle restricting the efficiency of PSMs. In this work, we adopted a solid-liquid two-step film formation technique, which involved the evaporation of a lead iodide film and blade coating of an organic ammonium halide solution to prepare perovskite films. This method possesses the advantages of integrating vapor deposition and solution methods, which could apply to substrates with different roughness and avoid using toxic solvents to achieve a more uniform, large-area perovskite film...
May 2, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38698219/author-correction-recent-progress-in-interfacial-dipole-engineering-for-perovskite-solar-cells
#10
Yinyi Ma, Jue Gong, Peng Zeng, Mingzhen Liu
No abstract text is available yet for this article.
May 2, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38698120/textured-perovskite-silicon-tandem-solar-cells-achieving-over-30-efficiency-promoted-by-4-fluorobenzylamine-hydroiodide
#11
JOURNAL ARTICLE
Jingjing Liu, Biao Shi, Qiaojing Xu, Yucheng Li, Yuxiang Li, Pengfei Liu, Zetong SunLi, Xuejiao Wang, Cong Sun, Wei Han, Diannan Li, Sanlong Wang, Dekun Zhang, Guangwu Li, Xiaona Du, Ying Zhao, Xiaodan Zhang
Monolithic textured perovskite/silicon tandem solar cells (TSCs) are expected to achieve maximum light capture at the lowest cost, potentially exhibiting the best power conversion efficiency. However, it is challenging to fabricate high-quality perovskite films and preferred crystal orientation on commercially textured silicon substrates with micrometer-size pyramids. Here, we introduced a bulky organic molecule (4-fluorobenzylamine hydroiodide (F-PMAI)) as a perovskite additive. It is found that F-PMAI can retard the crystallization process of perovskite film through hydrogen bond interaction between F- and FA+ and reduce (111) facet surface energy due to enhanced adsorption energy of F-PMAI on the (111) facet...
May 2, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38698113/understanding-the-novel-approach-of-nanoferroptosis-for-cancer-therapy
#12
REVIEW
Afsana Sheikh, Prashant Kesharwani, Waleed H Almalki, Salem Salman Almujri, Linxin Dai, Zhe-Sheng Chen, Amirhossein Sahebkar, Fei Gao
As a new form of regulated cell death, ferroptosis has unraveled the unsolicited theory of intrinsic apoptosis resistance by cancer cells. The molecular mechanism of ferroptosis depends on the induction of oxidative stress through excessive reactive oxygen species accumulation and glutathione depletion to damage the structural integrity of cells. Due to their high loading and structural tunability, nanocarriers can escort the delivery of ferro-therapeutics to the desired site through enhanced permeation or retention effect or by active targeting...
May 2, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38687411/diamond-like-carbon-depositing-on-the-surface-of-polylactide-membrane-for-prevention-of-adhesion-formation-during-tendon-repair
#13
JOURNAL ARTICLE
Yao Xiao, Zaijin Tao, Yufeng Ju, Xiaolu Huang, Xinshu Zhang, Xiaonan Liu, Pavel A Volotovski, Chao Huang, Hongqi Chen, Yaozhong Zhang, Shen Liu
Post-traumatic peritendinous adhesion presents a significant challenge in clinical medicine. This study proposes the use of diamond-like carbon (DLC) deposited on polylactic acid (PLA) membranes as a biophysical mechanism for anti-adhesion barrier to encase ruptured tendons in tendon-injured rats. The results indicate that PLA/DLC composite membrane exhibits more efficient anti-adhesion effect than PLA membrane, with histological score decreasing from 3.12 ± 0.27 to 2.20 ± 0...
April 30, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38687410/durable-ru-nanocrystal-with-hfo-2-modification-for-acidic-overall-water-splitting
#14
JOURNAL ARTICLE
Xiangkai Kong, Jie Xu, Zhicheng Ju, Changle Chen
Durable and efficient bi-functional catalyst, that is capable of both oxygen evolution reaction and hydrogen evolution reaction under acidic condition, are highly desired for the commercialization of proton exchange membrane water electrolysis. Herein, we report a robust L-Ru/HfO2 heterostructure constructed via confining crystalline Ru nanodomains by HfO2 matrix. When assembled with a proton exchange membrane, the bi-functional L-Ru/HfO2 catalyst-based electrolyzer presents a voltage of 1.57 and 1.67 V to reach 100 and 300 mA cm-2 current density, prevailing most of previously reported Ru-based materials as well as commercial Pt/C||RuO2 electrolyzer...
April 30, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38684597/dual-defect-engineering-strategy-enables-high-durability-rechargeable-magnesium-metal-batteries
#15
JOURNAL ARTICLE
Fuyu Chen, Bai-Qing Zhao, Kaifeng Huang, Xiu-Fen Ma, Hong-Yi Li, Xie Zhang, Jiang Diao, Jili Yue, Guangsheng Huang, Jingfeng Wang, Fusheng Pan
Rechargeable magnesium-metal batteries (RMMBs) are promising next-generation secondary batteries; however, their development is inhibited by the low capacity and short cycle lifespan of cathodes. Although various strategies have been devised to enhance the Mg2+ migration kinetics and structural stability of cathodes, they fail to improve electronic conductivity, rendering the cathodes incompatible with magnesium-metal anodes. Herein, we propose a dual-defect engineering strategy, namely, the incorporation of Mg2+ pre-intercalation defect (P-Mgd ) and oxygen defect (Od ), to simultaneously improve the Mg2+ migration kinetics, structural stability, and electronic conductivity of the cathodes of RMMBs...
April 29, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38683261/manipulating-crystal-growth-and-secondary-phase-pbi-2-to-enable-efficient-and-stable-perovskite-solar-cells-with-natural-additives
#16
JOURNAL ARTICLE
Yirong Wang, Yaohui Cheng, Chunchun Yin, Jinming Zhang, Jingxuan You, Jizheng Wang, Jinfeng Wang, Jun Zhang
In perovskite solar cells (PSCs), the inherent defects of perovskite film and the random distribution of excess lead iodide (PbI2 ) prevent the improvement of efficiency and stability. Herein, natural cellulose is used as the raw material to design a series of cellulose derivatives for perovskite crystallization engineering. The cationic cellulose derivative C-Im-CN with cyano-imidazolium (Im-CN) cation and chloride anion prominently promotes the crystallization process, grain growth, and directional orientation of perovskite...
April 29, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38668830/metal-halide-perovskite-submicrometer-thick-films-for-ultra-stable-self-powered-direct-x-ray-detectors
#17
JOURNAL ARTICLE
Marco Girolami, Fabio Matteocci, Sara Pettinato, Valerio Serpente, Eleonora Bolli, Barbara Paci, Amanda Generosi, Stefano Salvatori, Aldo Di Carlo, Daniele M Trucchi
Metal-halide perovskites are revolutionizing the world of X-ray detectors, due to the development of sensitive, fast, and cost-effective devices. Self-powered operation, ensuring portability and low power consumption, has also been recently demonstrated in both bulk materials and thin films. However, the signal stability and repeatability under continuous X-ray exposure has only been tested up to a few hours, often reporting degradation of the detection performance. Here it is shown that self-powered direct X-ray detectors, fabricated starting from a FAPbBr3 submicrometer-thick film deposition onto a mesoporous TiO2 scaffold, can withstand a 26-day uninterrupted X-ray exposure with negligible signal loss, demonstrating ultra-high operational stability and excellent repeatability...
April 26, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38668771/12-6%C3%A2-%C3%AE-m-thick-asymmetric-composite-electrolyte-with-superior-interfacial-stability-for-solid-state-lithium-metal-batteries
#18
JOURNAL ARTICLE
Zheng Zhang, Jingren Gou, Kaixuan Cui, Xin Zhang, Yujian Yao, Suqing Wang, Haihui Wang
Solid-state lithium metal batteries (SSLMBs) show great promise in terms of high-energy-density and high-safety performance. However, there is an urgent need to address the compatibility of electrolytes with high-voltage cathodes/Li anodes, and to minimize the electrolyte thickness to achieve high-energy-density of SSLMBs. Herein, we develop an ultrathin (12.6 µm) asymmetric composite solid-state electrolyte with ultralight areal density (1.69 mg cm-2 ) for SSLMBs. The electrolyte combining a garnet (LLZO) layer and a metal organic framework (MOF) layer, which are fabricated on both sides of the polyethylene (PE) separator separately by tape casting...
April 26, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38662149/rational-design-of-cost-effective-metal-doped-zro-2-for-oxygen-evolution-reaction
#19
JOURNAL ARTICLE
Yuefeng Zhang, Tianyi Wang, Liang Mei, Ruijie Yang, Weiwei Guo, Hao Li, Zhiyuan Zeng
The design of cost-effective electrocatalysts is an open challenging for oxygen evolution reaction (OER) due to the "stable-or-active" dilemma. Zirconium dioxide (ZrO2 ), a versatile and low-cost material that can be stable under OER operating conditions, exhibits inherently poor OER activity from experimental observations. Herein, we doped a series of metal elements to regulate the ZrO2 catalytic activity in OER via spin-polarized density functional theory calculations with van der Waals interactions. Microkinetic modeling as a function of the OER activity descriptor (GO* -GHO* ) displays that 16 metal dopants enable to enhance OER activities over a thermodynamically stable ZrO2 surface, among which Fe and Rh (in the form of single-atom dopant) reach the volcano peak (i...
April 25, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38656466/structurally-flexible-2d-spacer-for-suppressing-the-electron-phonon-coupling-induced-non-radiative-decay-in-perovskite-solar-cells
#20
JOURNAL ARTICLE
Ruikun Cao, Kexuan Sun, Chang Liu, Yuhong Mao, Wei Guo, Ping Ouyang, Yuanyuan Meng, Ruijia Tian, Lisha Xie, Xujie Lü, Ziyi Ge
This study presents experimental evidence of the dependence of non-radiative recombination processes on the electron-phonon coupling of perovskite in perovskite solar cells (PSCs). Via A-site cation engineering, a weaker electron-phonon coupling in perovskite has been achieved by introducing the structurally soft cyclohexane methylamine (CMA+ ) cation, which could serve as a damper to alleviate the mechanical stress caused by lattice oscillations, compared to the rigid phenethyl methylamine (PEA+ ) analog. It demonstrates a significantly lower non-radiative recombination rate, even though the two types of bulky cations have similar chemical passivation effects on perovskite, which might be explained by the suppressed carrier capture process and improved lattice geometry relaxation...
April 24, 2024: Nano-Micro Letters
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