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【標(biāo)題速讀】【Advmat】【2022年】【9月】

2023-07-14 23:41 作者:Rt_Cola  | 我要投稿

聲明:本專欄主要對生命科學(xué)領(lǐng)域的一些期刊文章標(biāo)題進行翻譯,所有內(nèi)容均由本人手工整理翻譯。由于本人專業(yè)為生物分析相關(guān),其他領(lǐng)域如果出現(xiàn)翻譯錯誤請諒解。

Organic Semiconductors

In article number 2202575, Anirudh Sharma, Derya Baran, and co-workers unravel the inconsistencies of the determination of the absolute energy levels in organic semiconductors and their implication, particularly in the field of organic solar cells. In the cover image, the charges generated by the excitation of the materials by light are represented by the energy balls with feet and hands: electrons are represented in green and holes in red. The charges are jumping down a staircase, representing the energy levels of different organic semiconductor materials.

有機半導(dǎo)體

在第 2202575 號文章中,Anirudh Sharma、Derya Baran 及其同事闡明了有機半導(dǎo)體中絕對能級測定的不一致及其含義,特別是在有機太陽能電池領(lǐng)域。在封面圖片中,光激發(fā)材料產(chǎn)生的電荷由帶有腳和手的能量球表示:電子用綠色表示,空穴用紅色表示。電荷從樓梯上跳下來,代表不同有機半導(dǎo)體材料的能級。

Dual-Responsive Actuators

In article number 2203613, Il-Kwon Oh and co-workers report the design and synthesis of magnetically and electrically driven dual-responsive soft actuators (MESAs) from a nickel-based metal–organic framework. The MESA is successfully utilized to demonstrate the hovering motion of a hummingbird robot under magnetic and electric fields.

雙響應(yīng)執(zhí)行器

在文章編號 2203613 中,Il-Kwon Oh 和同事報告了基于鎳基金屬有機框架的磁電驅(qū)動雙響應(yīng)軟執(zhí)行器 (MESA) 的設(shè)計和合成。MESA 已成功用于演示蜂鳥機器人在磁場和電場下的懸停運動。

Visualization of Fingerprints

Visualization of fingerprints plays a crucial role in personal identification, security, and criminal investigation. In article number 2202540, Tao Tu and co-workers report the instantaneous high-resolution visualization of latent fingerprints in water using color-tunable aggregation-induced emission pincer complexes under UV or even ambient light. This work provides an excellent example for practical recording and analysis of latent fingerprints in different scenarios.

指紋可視化

指紋可視化在個人身份識別、安全和刑事調(diào)查中發(fā)揮著至關(guān)重要的作用。在第 2202540 號文章中,Tao Tu 和同事報告了在紫外線甚至環(huán)境光下使用顏色可調(diào)的聚集誘導(dǎo)發(fā)射鉗復(fù)合物對水中潛在指紋進行瞬時高分辨率可視化。這項工作為不同場景下潛在指紋的實際記錄和分析提供了一個很好的例子。

Bismuth Oxyselenide

Novel photoinduced quasiparticles, excimers, in the non-van-der-Waals 2D semiconductor Bi2O2Se are unambiguously by Jianbo Hu and co-workers in article number 2204227, identified through analyzing the emerging dynamic features by transient absorption spectra. Excimers in the Bi2O2Se nanosheets are diffusive and their formation can be simply described as excitons relaxed to an excimer geometry. This work advances the fundamental understanding of carrier dynamics in Bi2O2Se, which may motivate novel device design.

硒化鉍

胡建波及其同事在文章編號 2204227 中明確指出,非范德華二維半導(dǎo)體 Bi2O2Se 中的新型光致準(zhǔn)粒子(準(zhǔn)分子)是通過瞬態(tài)吸收光譜分析新興動態(tài)特征而確定的。Bi2O2Se 納米片中的準(zhǔn)分子具有擴散性,其形成可以簡單地描述為弛豫至準(zhǔn)分子幾何形狀的激子。這項工作增進了對 Bi2O2Se 載流子動力學(xué)的基本理解,這可能會激發(fā)新穎的器件設(shè)計。

Biotemplating

In article number 2200408, Jae-Byum Chang and co-workers propose a method using 1.4 nm nanogold-conjugated antibodies for synthesizing metallic structures that resemble the 3D assemblies of specific proteins in mammalian cells and animal tissues, which can facilitate the conversion of specific protein structures into metallic forms in ex vivo multicellular organisms.

生物模板

在文章號2200408中,Jae Byum Chang及其同事提出了一種使用1.4nm納米金綴合抗體合成金屬結(jié)構(gòu)的方法,該金屬結(jié)構(gòu)類似于哺乳動物細胞和動物組織中特定蛋白質(zhì)的3D組裝,這可以促進特定蛋白質(zhì)結(jié)構(gòu)在離體多細胞生物中轉(zhuǎn)化為金屬形式。

Superhydrophobic Surfaces

Researchers have designed a new type of superhydrophobic surfaces with chemical reactivity. In article number 2203619, Wenqian Feng and co-workers demonstrate living photolithography on such superhydrophobic surfaces to graft functional moieties with controlled the densities and species. The distinctive properties of this surface can provide new insight into intelligent superhydrophobic material development and practical applications, such as aqueous/oil microdroplet arrays, multi-anti-counterfeiting labels, and integrated microfluidic reactors with enzymes for chemical logic learning.

超疏水表面

研究人員設(shè)計了一種具有化學(xué)反應(yīng)性的新型超疏水表面。在第 2203619 號文章中,Wenqian Feng 及其同事展示了在這種超疏水表面上進行活體光刻技術(shù),以控制密度和種類來接枝功能部分。該表面的獨特特性可以為智能超疏水材料的開發(fā)和實際應(yīng)用提供新的見解,例如水/油微滴陣列、多重防偽標(biāo)簽以及用于化學(xué)邏輯學(xué)習(xí)的帶有酶的集成微流體反應(yīng)器。

Negative Differential Resistance

In article number 2202799, a reconfigurable, multiple negative differential resistance (m-NDR) device, which features electric-field-induced tunability of multiple threshold voltages, is presented by Jin-Hong Park and co-workers. Its reconfigurability is verified in terms of the function of a multi-valued logic circuit composed of a reconfigurable m-NDR device and a load transistor; staggered-type and broken-type double peak-NDR device operations are adopted for ternary inverter and latch circuits, respectively.

負微分電阻

在第 2202799 號文章中,Jin-Hong Park 及其同事提出了一種可重新配置的多重負微分電阻 (m-NDR) 器件,該器件具有電場感應(yīng)的多個閾值電壓可調(diào)性。通過可重構(gòu)m-NDR器件和負載晶體管組成的多值邏輯電路的功能驗證了其可重構(gòu)性;三值反相器和鎖存電路分別采用交錯型和斷續(xù)型雙峰NDR器件操作。

Bone Repair

In article number 2202044, Jiayong Dai, Jianxun Ding, Huanghao Yang, and co-workers develop an osteoimmunity-regulating biomimetically hierarchical scaffold to improve large-scale bone-defect regene ration through alleviating inflammation, enhancing neovascularization, stimulating osteogenesis, and inhibiting osteoclasts, facilitating the balance of the immune system and bone metabolism and augmenting bone repair.

骨修復(fù)

在文章編號2202044中,戴家勇、丁建勛、楊黃浩及其同事開發(fā)了一種骨免疫調(diào)節(jié)仿生分級支架,通過減輕炎癥、增強新生血管、刺激成骨和抑制破骨細胞來提高大規(guī)模骨缺損的再生率,促進免疫系統(tǒng)和骨代謝的平衡并增強骨修復(fù)。

Pressure Sensors

In article number 2202478, Jun Yang, Jun Chen, and co-workers report a kirigami-inspired pressure sensor for wearable dynamic cardiovascular monitoring. Utilizing the vertical kirigami-inspired structure and a simple fabrication process, the sensor provides an ascendant way to overcome motion artifacts when monitoring human pulse signals, thus representing a solid advancement toward personalized cardiovascular monitoring in the era of the Internet of things.

壓力傳感器

在第 2202478 號文章中,Jun Yang、Jun Chen 及其同事報告了一種受剪紙啟發(fā)的壓力傳感器,用于可穿戴動態(tài)心血管監(jiān)測。該傳感器利用垂直剪紙結(jié)構(gòu)和簡單的制造工藝,在監(jiān)測人體脈搏信號時提供了一種克服運動偽影的優(yōu)勢方法,從而代表了物聯(lián)網(wǎng)時代個性化心血管監(jiān)測的堅實進步。

Dendrite Regulation

In article number 2203835, Liqun Wang, Feng Hou, Ji Liang, and co-workers present Cu nanowires that have regularly exposed (111) planes at the edges, which induces tiny, homogeneously distributed, and uniform Zn dendrites by matching Zn(002)/Cu(111) facets. This dendrite regulation strategy is extremely effective in improving Zn-anode reversibility in ultrahigh current densities and promising in stabilizing other metal species as well.

樹枝狀結(jié)構(gòu)調(diào)節(jié)

在文章編號2203835中,Liqu Wang、Feng Hou、Ji Liang及其同事提出了在邊緣具有規(guī)則暴露的(111)平面的Cu納米線,其通過匹配Zn(002)/Cu(111)面誘導(dǎo)微小、均勻分布和均勻的Zn枝晶。這種枝晶調(diào)節(jié)策略在提高鋅陽極在超高電流密度下的可逆性方面非常有效,并有望穩(wěn)定其他金屬物種。

Interactive Displays

A wireless stand-alone trimodal interactive display is developed by Cheolmin Park and co-workers, as reported in article number 2204760, where finger touch is displayed with three types of outputs of field-induced electroluminescence, inverse piezoelectric sound, and tactile vibration, and remotely powered by the unique AC-to-AC power transfer based on direct capacitive coupling, making the device potentially suitable for a smart braille display.

交互式顯示器

Cheolmin Park及其同事開發(fā)了一種無線獨立的三模態(tài)交互式顯示器,如文章編號2204760所述,其中手指觸摸通過場致電致發(fā)光、反向壓電聲音和觸覺振動三種類型的輸出進行顯示,并通過基于直接電容耦合的獨特交流-交流功率傳輸進行遠程供電,使得該設(shè)備潛在地適合于智能盲文顯示器。

Metasurfaces

A self-aligned suspended chiral bilayer metasurface via single-step electron-beam lithography is reported by Tun Cao, Yan Jun Liu, and co-workers in article number 2203956. A huge optical chirality of 221° μm?1 is achieved by the free-standing metasurfaces with overall thickness of 100 nm. The bilayer metasurface demonstrates label-free discrimination of chiral molecules at zeptomole level, with sensitivity orders of magnitude larger than conventional circular dichroism spectroscopy.

超表面

Tun Cao、Yan Jun Liu 及其同事通過單步電子束光刻技術(shù)報道了一種自對準(zhǔn)懸浮手性雙層超表面,文章編號為 2203956。自由光學(xué)手性實現(xiàn)了 221° μm?1 的巨大光學(xué)手性。-總厚度為100 nm的直立超表面。雙層超表面表現(xiàn)出在 zeptomole 水平上對手性分子的無標(biāo)記辨別,其靈敏度比傳統(tǒng)的圓二色光譜法大幾個數(shù)量級。

Plasmonic Arrays

In article number 2205330, Leonardo Scarabelli and co-workers report on the in situ growth of gold nanoparticle plasmonic ordered arrays. In situ growth is an unconventional fabrication approach where gold precursors are reduced directly at specific chemically patterned areas on the substrate. Taking advantage of bottom-up wet-chemistry synthesis principles, nanoparticle morphology and array periodicity can be easily tuned using this method. The plasmonic arrays display narrow lattice plasmon resonances, constituting a major step forward for this class of techniques.

等離子陣列

在第 2205330 號文章中,Leonardo Scarabelli 及其同事報告了金納米顆粒等離子體有序陣列的原位生長。原位生長是一種非常規(guī)的制造方法,其中金前體直接在基板上的特定化學(xué)圖案區(qū)域被還原。利用自下而上的濕化學(xué)合成原理,可以使用這種方法輕松調(diào)整納米粒子的形態(tài)和陣列周期性。等離子體陣列顯示出窄晶格等離子體共振,這是此類技術(shù)向前邁出的重要一步。

Microbial Electrosynthesis

Microbial electrosynthesis holds the promise of sustainable chemical production. In article number 2203480, Guillermo C. Bazan and co-workers show that 3D living biocomposites integrating electroactive bacteria with an n-type conjugated polyelectrolyte allow efficient long-range electron transfer from electrode to living cells, thereby enabling microbial electrosynthesis. The one-step self-assembly process offers a simple and effective strategy to improve bioelectrochemical systems.

微生物電合成

微生物電合成有望實現(xiàn)可持續(xù)化學(xué)生產(chǎn)。在文章編號 2203480 中,Guillermo C. Bazan 及其同事表明,將電活性細菌與 n 型共軛聚電解質(zhì)集成的 3D 活體生物復(fù)合材料可以實現(xiàn)從電極到活細胞的高效長程電子轉(zhuǎn)移,從而實現(xiàn)微生物電合成。一步自組裝過程提供了一種簡單而有效的策略來改進生物電化學(xué)系統(tǒng)。

Thermoelectric Materials

In article number 2204132, G. Jeffrey Snyder, Yeon Sik Jung, Min-Wook Oh, and co-workers show that charged cation antisites are principal defects forestalling p-type dopability of AgBiSe2-based thermoelectric materials via saturation annealing under selenium vapor. This finding offers a rational design rule for stabilizing thermoelectric properties of chalcogenide-based materials.

熱電材料

在文章編號 2204132 中,G. Jeffrey Snyder、Yeon Sik Jung、Min-Wook Oh 及其同事表明,帶電陽離子反位點是通過在硒蒸氣下進行飽和退火來阻止 AgBiSe2 基熱電材料的 p 型摻雜性的主要缺陷。這一發(fā)現(xiàn)為穩(wěn)定硫族化物材料的熱電性能提供了合理的設(shè)計規(guī)則。

Heat Transfer

In article number 2205120, Hortense Le Ferrand and co-workers present a high-thermal-conductivity BN-based composite with locally oriented microstructures that can conduct heat intentionally toward specific areas. The customizable heat-transfer paths highlight a solution for thermal management of future 3D integrated electronics.

傳播熱量

在文章編號 2205120 中,Hortense Le Ferrand 及其同事提出了一種高導(dǎo)熱性 BN 基復(fù)合材料,具有局部定向微結(jié)構(gòu),可以有意地將熱量傳導(dǎo)到特定區(qū)域??啥ㄖ频膫鳠崧窂酵怀隽宋磥?3D 集成電子產(chǎn)品熱管理的解決方案。

Liquid Sculpture

In article number 2205563, Yuchao Li, Lingxiang Jiang, and co-workers present an optothermal strategy to dynamically control phase-separated liquids with an unprecedented level of spatiotemporal addressability, for the realization of liquid painting and liquid animation, such as a liquid sculpture of a butterfly.

液體雕塑

在2205563號文章中,李宇超、蔣凌翔及其同事提出了一種光熱策略,以前所未有的時空可尋址性水平動態(tài)控制相分離的液體,以實現(xiàn)液體繪畫和液體動畫,如蝴蝶的液體雕塑。

Janus Monolayers

In article number 2205226, Bernhard Urbaszek, Antony George, Andrey Turchanin, and co-workers present a new method to grow large-scale and high-structural-quality SeMoS Janus monolayers on Au substrates. Their high optical quality is demonstrated by optical and magneto-optical measurements which reveal the strong exciton-phonon coupling and enable an exciton g-factor of ?3.3 to be obtained. Cover art by Shahab Mohebi Fard.

Janus單層膜

在文章編號 2205226 中,Bernhard Urbaszek、Antony George、Andrey Turchanin 及其同事提出了一種在 Au 基底上生長大規(guī)模和高結(jié)構(gòu)質(zhì)量 SeMoS Janus 單層的新方法。光學(xué)和磁光測量證明了它們的高光學(xué)質(zhì)量,這些測量揭示了強激子-聲子耦合,并且能夠獲得-3.3的激子g因子。封面藝術(shù)由 Shahab Mohebi Fard 創(chuàng)作。

CO2 Electroreduction

It remains challenging to increase the energy efficiency while maintaining long durability of catalysts for CO2 electroreduction to CO. In article number 2204637, Xin Wang, Ming Feng, Aiping Yu, Zhongwei Chen, and co-workers demonstrate a dual-scale delicate design of a non-noble Sn–ZnO active interface inserted into nanopores of high-surface-area carbon nanospheres, through d-bandwidth tuning and nanoconfinement tailoring to develop efficient and stable CO2 electroreduction.

CO2電還原

在保持CO2電還原為CO的催化劑的長期耐久性的同時提高能源效率仍然是一項挑戰(zhàn)。在文章編號2204637中,王欣、馮明、余愛平、陳忠偉及其同事展示了插入高表面積碳納米球的納米孔中的非貴Sn–ZnO活性界面的雙尺度精細設(shè)計,通過d帶寬調(diào)諧和納米限制剪裁,開發(fā)高效穩(wěn)定的CO2電還原。

3D-Printed Microbatteries

In article number 2205569, Shuanghao Zheng, Zhong-Shuai Wu, and co-workers report a prototype of a planar and flexible 3D-printed sodium-ion microbattery with a 3D hierarchically porous framework by consecutively printing cathode, anode, and electrolyte inks. Such a printable strategy paves a new avenue for scalable and customizable fabrication of high-energy micro-power-sources for next-generation wearable and portable microelectronics.

3D 打印微電池

在第 2205569 號文章中,鄭雙豪、吳中帥及其同事通過連續(xù)打印陰極、陽極和電解質(zhì)墨水,報道了一種平面柔性 3D 打印鈉離子微電池原型,該電池具有 3D 分層多孔框架。這種可打印策略為下一代可穿戴和便攜式微電子產(chǎn)品的高能微電源的可擴展和可定制制造鋪平了新途徑。

4D Printing

In article number 2204890, Ruike Renee Zhao, H. Jerry Qi, and co-workers report a hybrid 4D printing method to fabricate freestanding liquid crystal elastomers “on-the-fly” by using laser-assisted direct ink writing. This process is integrated with Digital Light Processing for printing optional structural or sacrificial materials to create active architectures, such as active tensegrities, loading-bearing actuators, and 3D liquid crystal lattices, in a one-step additive process.

4D打印

在第 2204890 號文章中,Ruike Renee Zhu、H. Jerry Qi 及其同事報告了一種混合 4D 打印方法,通過使用激光輔助直接墨水書寫“即時”制造獨立式液晶彈性體。該工藝與數(shù)字光處理集成,用于打印可選的結(jié)構(gòu)或犧牲材料,以在一步增材工藝中創(chuàng)建活性結(jié)構(gòu),例如活性張拉整體、承載執(zhí)行器和 3D 液晶晶格。

High-Performance Nanozymes

In article number 2205324, Zhenglin Yang, Xiyun Yan, Kelong Fan, and co-workers report a high-performance catalase-like iron single-atom nanozyme prepared by edge-site engineering. Hierarchical mesoporous and edge-hosted atomic sites are formed during the pyrolysis process, enabling efficient catalytic decomposition of H2O2 into O2 and H2O. Based on the catalase-like activity, effective treatment of retinal vasculopathies is realized by intravitreal administration of the nanozyme.

高性能納米酶

在第2205324號文章中,楊正林、顏熙云、范克龍等人報道了一種通過邊緣位點工程制備的高性能類過氧化氫酶鐵單原子納米酶。在熱解過程中形成分層介孔和邊緣托管原子位點,從而能夠?qū)?H2O2 有效催化分解為 O2 和 H2O?;谶^氧化氫酶樣活性,通過玻璃體內(nèi)施用納米酶可實現(xiàn)視網(wǎng)膜血管病變的有效治療。

Covalent Polymer Self-Assembly

In article number 2109701, Yang Shi and co-workers introduce a new mechanism of polymer self-assembly via covalent bonding. The covalent approach uses a homopolymer and simple protocols but shows much better robustness and controllability than non-covalent polymer self-assembly. The new strategy builds up hierarchical nano- to macroscale materials.

共價聚合物自組裝

在第 2109701 號文章中,Yang Shi 及其同事介紹了一種通過共價鍵進行聚合物自組裝的新機制。共價方法使用均聚物和簡單的方案,但顯示出比非共價聚合物自組裝更好的魯棒性和可控性。新策略構(gòu)建了從納米級到宏觀級的分層材料。

Flexible Electronics

In article number 2203330, Fangxu Yang, Wenping Hu, and co-workers demonstrate a polymer-template-assisted molecular-assembly strategy to fabricate large-area and highly aligned organic single crystal arrays. The proposed strategy is shown to be applicable to a variety of semiconductor molecules, and the resulting transistors exhibit excellent performance and high bendable durability, demonstrating great promise for flexible electronics.

柔性電子產(chǎn)品

在第 2203330 號文章中,F(xiàn)angxu Yang、Wenping Hu 及其同事展示了聚合物模板輔助分子組裝策略,用于制造大面積且高度排列的有機單晶陣列。所提出的策略被證明適用于各種半導(dǎo)體分子,所得晶體管表現(xiàn)出優(yōu)異的性能和高可彎曲耐用性,展示了柔性電子產(chǎn)品的巨大前景。

1.Liquid-Phase Exfoliation of Nonlayered Non-Van-Der-Waals Crystals into Nanoplatelets.

非層狀非范德華晶體液相剝離成納米片。

2.Toward Practical High-Energy-Density Lithium–Sulfur Pouch Cells: A Review.

走向?qū)嵱玫母吣芰棵芏蠕嚵蜍洶姵兀夯仡櫋?/p>

3.Reactive Oxygen Species Scavenging Nanomedicine for the Treatment of Ischemic Heart Disease.

用于治療缺血性心臟病的活性氧清除納米藥物。

4.The Energy Level Conundrum of Organic Semiconductors in Solar Cells.

太陽能電池中有機半導(dǎo)體的能級難題。

5.A Dual-Responsive Magnetoactive and Electro–Ionic Soft Actuator Derived from a Nickel-Based Metal–Organic Framework.

一種源自鎳基金屬有機框架的雙響應(yīng)磁活性和電離子軟執(zhí)行器。

6.Instantaneous High-Resolution Visual Imaging of Latent Fingerprints in Water Using Color-Tunable AIE Pincer Complexes.

使用顏色可調(diào)的 AIE Pincer 復(fù)合物對水中的潛指紋進行瞬時高分辨率視覺成像。

7.Excimer Formation in the Non-Van-Der-Waals 2D Semiconductor Bi2O2Se.

非范德華二維半導(dǎo)體 Bi2O2Se 中準(zhǔn)分子的形成。

8.Multiscale Functional Metal Architectures by Antibody-Guided Metallization of Specific Protein Assemblies in Ex Vivo Multicellular Organisms.

通過抗體引導(dǎo)離體多細胞生物中特定蛋白質(zhì)組件的金屬化來實現(xiàn)多尺度功能金屬結(jié)構(gòu)。

9.Convection Driven Ultrarapid Protein Detection via Nanobody-Functionalized Organic Electrochemical Transistors.

通過納米抗體功能化有機電化學(xué)晶體管進行對流驅(qū)動的超快速蛋白質(zhì)檢測。

10.Preparation of 2D Molybdenum Phosphide via Surface-Confined Atomic Substitution.

通過表面限制原子取代制備二維磷化鉬。

11.Self-Healing and Light-Soaking in MAPbI3: The Effect of H2O.

MAPbI3 中的自愈和光浸泡:H2O 的影響。

12.Endocytosis-Independent and Cancer-Selective Cytosolic Protein Delivery via Reversible Tagging with LAT1 substrate.

通過 LAT1 底物的可逆標(biāo)記實現(xiàn)不依賴于內(nèi)吞作用和癌癥選擇性的胞漿蛋白遞送。

13.Semicrystalline Conjugated Polymers with Well-Defined Active Sites for Nitrogen Fixation in a Seawater Electrolyte.

具有明確活性位點的半結(jié)晶共軛聚合物,用于海水電解質(zhì)中的固氮。

14.Ultrafine Silver Nanoparticle Encapsulated Porous Molecular Traps for Discriminative Photoelectrochemical Detection of Mustard Gas Simulants by Synergistic Size-Exclusion and Site-Specific Recognition.

超細銀納米顆粒封裝的多孔分子陷阱,通過協(xié)同尺寸排阻和位點特異性識別對芥子氣模擬物進行判別性光電化學(xué)檢測。

15.Emergent Magnetic Fan Structures in Manganite Homojunction Arrays.

錳酸鹽同質(zhì)結(jié)陣列中的新興磁扇結(jié)構(gòu)。

16.Anode Catalysts in Anion-Exchange-Membrane Electrolysis without Supporting Electrolyte: Conductivity, Dynamics, and Ionomer Degradation.

無支持電解質(zhì)的陰離子交換膜電解中的陽極催化劑:電導(dǎo)率、動力學(xué)和離聚物降解。

17.Single-Crystalline Perovskite p–n Junction Nanowire Arrays for Ultrasensitive Photodetection.

用于超靈敏光電檢測的單晶鈣鈦礦 p-n 結(jié)納米線陣列。

18.Controlled Formation of Conduction Channels in Memristive Devices Observed by X-ray Multimodal Imaging.

通過 X 射線多模態(tài)成像觀察憶阻器件中傳導(dǎo)通道的受控形成。

19.Exposing Single Ni Atoms in Hollow S/N-Doped Carbon Macroporous Fibers for Highly Efficient Electrochemical Oxygen Evolution.

在空心 S/N 摻雜碳大孔纖維中暴露單個 Ni 原子,實現(xiàn)高效電化學(xué)析氧。

20.Mass Transfer Printing of Metal-Halide Perovskite Films and Nanostructures.

金屬鹵化物鈣鈦礦薄膜和納米結(jié)構(gòu)的大規(guī)模轉(zhuǎn)移印刷。

21.Volatile Organic Compound Sensing Array and Optoelectronic Filter System using Ion-Pairing Dyes with a Wide Visible Spectrum.

使用具有寬可見光譜的離子對染料的揮發(fā)性有機化合物傳感陣列和光電過濾系統(tǒng)。

22.Percolated Plasmonic Superlattices of Nanospheres with 1 nm-Level Gap as High-Index Metamaterials.

具有 1 nm 級間隙的納米球滲透等離子體超晶格作為高折射率超材料。

23.SrTiO3/CuNi-Heterostructure-Based Thermopile for Sensitive Human Radiation Detection and Noncontact Human–Machine Interaction.

基于 SrTiO3/CuNi 異質(zhì)結(jié)構(gòu)的熱電堆,用于靈敏的人體輻射檢測和非接觸式人機交互。

24.Highly Sensitive Photoelectric Detection and Imaging Enhanced by the Pyro-Phototronic Effect Based on a Photoinduced Dynamic Schottky Effect in 4H-SiC.

基于 4H-SiC 中光致動態(tài)肖特基效應(yīng)的熱釋光電子效應(yīng)增強的高靈敏度光電探測和成像。

25.Robust Piezoelectricity with Spontaneous Polarization in Monolayer Tellurene and Multilayer Tellurium Film at Room Temperature for Reliable Memory.

室溫下單層碲烯和多層碲薄膜具有自發(fā)極化的魯棒壓電性,可實現(xiàn)可靠的存儲。

26.Photoactivatable Silencing Extracellular Vesicle (PASEV) Sensitizes Cancer Immunotherapy.

光激活沉默細胞外囊泡 (PASEV) 使癌癥免疫療法變得敏感。

27.Experimental Realization of Atomic Monolayer Si9C15.

原子單層 Si9C15 的實驗實現(xiàn)。

28.A New Polymer Donor Enables Binary All-Polymer Organic Photovoltaic Cells with 18% Efficiency and Excellent Mechanical Robustness.

新型聚合物供體使二元全聚合物有機光伏電池具有 18% 的效率和出色的機械魯棒性。

29.A Room-Temperature Ferroelectric Resonant Tunneling Diode.

室溫鐵電諧振隧道二極管。

30.Rapid Ultratough Topological Tissue Adhesives.

快速超韌拓撲組織粘合劑。

31.Energy Interplay in Materials: Unlocking Next-Generation Synchronous Multisource Energy Conversion with Layered 2D Crystals.

材料中的能量相互作用:利用層狀二維晶體解鎖下一代同步多源能量轉(zhuǎn)換。

32.Multimode Electron Tomography Sheds Light on Synthesis, Structure, and Properties of Complex Metal-Based Nanoparticles.

多模電子斷層掃描揭示了復(fù)雜金屬基納米顆粒的合成、結(jié)構(gòu)和性能。

33.Data-Driven Materials Innovation and Applications.

數(shù)據(jù)驅(qū)動的材料創(chuàng)新和應(yīng)用。

34.A Reactive Superhydrophobic Platform for Living Photolithography.

用于活體光刻的反應(yīng)性超疏水平臺。

35.A Van Der Waals Reconfigurable Multi-Valued Logic Device and Circuit Based on Tunable Negative-Differential-Resistance Phenomenon.

基于可調(diào)負微分電阻現(xiàn)象的范德瓦爾斯可重構(gòu)多值邏輯器件和電路。

36.Osteoimmunity-Regulating Biomimetically Hierarchical Scaffold for Augmented Bone Regeneration.

用于增強骨再生的骨免疫調(diào)節(jié)仿生分層支架。

37.Kirigami-Inspired Pressure Sensors for Wearable Dynamic Cardiovascular Monitoring.

用于可穿戴動態(tài)心血管監(jiān)測的受剪紙啟發(fā)的壓力傳感器。

38.Halide Remixing under Device Operation Imparts Stability on Mixed-Cation Mixed-Halide Perovskite Solar Cells.

設(shè)備操作下的鹵化物再混合可提高混合陽離子混合鹵化物鈣鈦礦太陽能電池的穩(wěn)定性。

39.The Third Dimension of Ferroelectric Domain Walls.

鐵電疇壁的第三維。

40.Cold-Starting All-Solid-State Batteries from Room Temperature by Thermally Modulated Current Collector in Sub-Minute.

通過熱調(diào)制集電器在亞分鐘內(nèi)從室溫冷啟動全固態(tài)電池。

41.Visualizing Dynamic Mechanical Actions with High Sensitivity and High Resolution by Near-Distance Mechanoluminescence Imaging.

通過近距機械發(fā)光成像以高靈敏度和高分辨率可視化動態(tài)機械動作。

42.Enhanced Thermoelectric Properties of Bi2Te3-Based Micro–Nano Fibers via Thermal Drawing and Interfacial Engineering.

通過熱拉伸和界面工程增強 Bi2Te3 基微納米纖維的熱電性能。

43.Top-Layer Engineering Reshapes Charge Transfer at Polar Oxide Interfaces.

頂層工程重塑極性氧化物界面的電荷轉(zhuǎn)移。

44.3D Hydrogel Evaporator with Vertical Radiant Vessels Breaking the Trade-Off between Thermal Localization and Salt Resistance for Solar Desalination of High-Salinity.

具有垂直輻射容器的 3D 水凝膠蒸發(fā)器打破了高鹽度太陽能海水淡化的熱局部化和耐鹽性之間的權(quán)衡。

45.Integrated Urinalysis Devices Based on Interface-Engineered Field-Effect Transistor Biosensors Incorporated With Electronic Circuits.

基于與電子電路結(jié)合的接口工程場效應(yīng)晶體管生物傳感器的集成尿液分析裝置。

46.A Chiral Dual-Core Organoboron Structure Realizes Dual-Channel Enhanced Ultrapure Blue Emission and Highly Efficient Circularly Polarized Electroluminescence.

手性雙核有機硼結(jié)構(gòu)實現(xiàn)雙通道增強型超純藍光發(fā)射和高效圓偏振電致發(fā)光。

47.Efficient Electroreduction of Nitrate into Ammonia at Ultralow Concentrations Via an Enrichment Effect.

通過富集效應(yīng)在超低濃度下將硝酸鹽有效電還原為氨。

48.Controllable Heterogenous Seeding-Induced Crystallization for High-Efficiency FAPbI3-Based Perovskite Solar Cells Over 24%.

基于 FAPbI3 的高效鈣鈦礦太陽能電池的可控異質(zhì)晶種誘導(dǎo)結(jié)晶,效率超過 24%。

49.Vacancy-Rich MXene-Immobilized Ni Single Atoms as a High-Performance Electrocatalyst for the Hydrazine Oxidation Reaction.

富空位 MXene 固定 Ni 單原子作為肼氧化反應(yīng)的高性能電催化劑。

50.Red Perovskite Light-Emitting Diodes with Efficiency Exceeding 25% Realized by Co-Spacer Cations.

通過共間隔陽離子實現(xiàn)效率超過 25% 的紅色鈣鈦礦發(fā)光二極管。

51.Periodic Nanoporous Inorganic Patterns Directly Made by Self-Ordering of Cracks.

通過裂紋自排序直接制備周期性納米多孔無機圖案。

52.An Initial Covalent Organic Polymer with Closed-F Edges Directly for Proton-Exchange-Membrane Fuel Cells.

一種直接用于質(zhì)子交換膜燃料電池的具有封閉 F 邊緣的初始共價有機聚合物。

53.Controllable Inverse Photoconductance in Semiconducting Nanowire Films.

半導(dǎo)體納米線薄膜中的可控逆光電導(dǎo)。

54.Releasable Water Charge-Trapping and Water-Resistant Photodetection using 1D Perovskitoid Hydrate Single Crystal.

使用一維鈣鈦礦水合物單晶進行可釋放的水電荷捕獲和防水光電檢測。

55.High-Performance Electrostrictive Relaxors with Dispersive Endotaxial Nanoprecipitations.

具有分散軸內(nèi)納米沉淀的高性能電致伸縮弛豫器。

56.A Single-Molecule Memristor based on an Electric-Field-Driven Dynamical Structure Reconfiguration.

基于電場驅(qū)動動態(tài)結(jié)構(gòu)重構(gòu)的單分子憶阻器。

57.Hot-Casting-Assisted Liquid Additive Engineering for Efficient and Stable Perovskite Solar Cells.

用于高效穩(wěn)定鈣鈦礦太陽能電池的熱鑄造輔助液體添加劑工程。

58.Low-Temperature High-Areal-Capacity Rechargeable Potassium-Metal Batteries.

低溫大容量可充電鉀金屬電池。

59.A Self-Reporting Fluorescent Salicylaldehyde–Chlorambucil Conjugate as a Type-II ICD Inducer for Cancer Vaccines.

一種自我報告熒光水楊醛-苯丁酸氮芥綴合物作為癌癥疫苗的 II 型 ICD 誘導(dǎo)劑。

60.Coordination Symmetry Breaking of Single-Atom Catalysts for Robust and Efficient Nitrate Electroreduction to Ammonia.

單原子催化劑的配位對稱性破缺,實現(xiàn)穩(wěn)健高效的硝酸鹽電還原制氨。

61.Protein-Mimicking Nanoparticles in Biosystems.

生物系統(tǒng)中的模擬蛋白質(zhì)納米顆粒。

62.Design Strategies for Structurally Controlled Polymer Surfaces via Cyclophane-Based CVD Polymerization and Post-CVD Fabrication.

通過基于環(huán)烷的 CVD 聚合和 CVD 后制造實現(xiàn)結(jié)構(gòu)控制聚合物表面的設(shè)計策略。

63.Emerging Liquid Metal Biomaterials: From Design to Application.

新興液態(tài)金屬生物材料:從設(shè)計到應(yīng)用。

64.An Ultrahigh Rate and Stable Zinc Anode by Facet-Matching-Induced Dendrite Regulation.

通過面匹配誘導(dǎo)的枝晶調(diào)節(jié)實現(xiàn)超高速率和穩(wěn)定的鋅陽極。

65.Wireless Stand-Alone Trimodal Interactive Display Enabled by Direct Capacitive Coupling.

通過直接電容耦合實現(xiàn)無線獨立三模態(tài)交互式顯示。

66.Ultrathin Suspended Chiral Metasurfaces for Enantiodiscrimination.

用于對映歧視的超薄懸浮手性超表面。

67.Surface Lattice Plasmon Resonances by Direct In Situ Substrate Growth of Gold Nanoparticles in Ordered Arrays.

通過在有序陣列中直接原位生長金納米粒子的表面晶格等離子體共振。

68.Enabling Electron Injection for Microbial Electrosynthesis with n-Type Conjugated Polyelectrolytes.

使用 n 型共軛聚電解質(zhì)實現(xiàn)微生物電合成的電子注入。

69.Fingerprints Indicating Superior Properties of Internal Interfaces in Cu(In,Ga)Se2 Thin-Film Solar Cells.

指紋圖譜表明 Cu(In,Ga)Se2 薄膜太陽能電池內(nèi)部界面具有優(yōu)異的性能。

70.Tuning Zn-Ion Solvation Chemistry with Chelating Ligands toward Stable Aqueous Zn Anodes.

用螯合配體調(diào)節(jié)鋅離子溶劑化化學(xué)以獲得穩(wěn)定的水性鋅陽極。

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