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生物质裂解产物的制备及HPLC检测其成分的虚拟仿真实验开发 被引量:3
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作者 郭明 王珏 +5 位作者 熊蔓 吴荣晖 杨雪娟 周建钟 李铭慧 栗嘉骏 《大学化学》 CAS 2020年第12期237-246,共10页
为提高信息化背景下高校实验教学质量和实践育人水平,解决实习实训环节开展困难的问题,开发了生物质快速热解及HPLC检测其成分的虚拟仿真实验平台。实验依据生物质快速热解制取裂解产物的工厂实际操作流程,结合高效液相检测化学成分的... 为提高信息化背景下高校实验教学质量和实践育人水平,解决实习实训环节开展困难的问题,开发了生物质快速热解及HPLC检测其成分的虚拟仿真实验平台。实验依据生物质快速热解制取裂解产物的工厂实际操作流程,结合高效液相检测化学成分的仪器分析实验过程,将虚拟实验划分为生物质样品预处理系统、生物质快速热解系统、生物油提质系统和复杂成分的大型仪器HPLC测定四个子系统,通过仿真使生物质裂解车间"真实"再现。该虚拟仿真实验充分将农林院校优势特色农林专业广泛涉及的生物质利用与基础化学课程(如有机化学、仪器分析、化工原理等)融合贯通,有利于全面提升人才培养质量,具有参考价值。 展开更多
关键词 生物质裂解工艺 虚拟仿真实验平台 HPLC检测
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Full‑Fiber Auxetic‑Interlaced Yarn Sensor for Sign‑Language Translation Glove Assisted by Artificial Neural Network 被引量:16
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作者 ronghui wu Sangjin Seo +2 位作者 Liyun Ma Juyeol Bae Taesung Kim 《Nano-Micro Letters》 SCIE EI CAS CSCD 2022年第8期269-282,共14页
Yarn sensors have shown promising application prospects in wearable electronics owing to their shape adaptability, good flexibility, and weavability. However, it is still a critical challenge to develop simultaneously... Yarn sensors have shown promising application prospects in wearable electronics owing to their shape adaptability, good flexibility, and weavability. However, it is still a critical challenge to develop simultaneously structure stable, fast response, body conformal, mechanical robust yarn sensor using full microfibers in an industrial-scalable manner. Herein, a full-fiber auxetic-interlaced yarn sensor(AIYS) with negative Poisson’s ratio is designed and fabricated using a continuous, mass-producible, structure-programmable, and low-cost spinning technology. Based on the unique microfiber interlaced architecture, AIYS simultaneously achieves a Poisson’s ratio of-1.5, a robust mechanical property(0.6 c N/dtex), and a fast train-resistance responsiveness(0.025 s), which enhances conformality with the human body and quickly transduce human joint bending and/or stretching into electrical signals. Moreover, AIYS shows good flexibility, washability, weavability, and high repeatability. Furtherly, with the AIYS array, an ultrafast full-letter sign-language translation glove is developed using artificial neural network. The sign-language translation glove achieves an accuracy of 99.8% for all letters of the English alphabet within a short time of 0.25 s. Furthermore, owing to excellent full letter-recognition ability, real-time translation of daily dialogues and complex sentences is also demonstrated. The smart glove exhibits a remarkable potential in eliminating the communication barriers between signers and non-signers. 展开更多
关键词 Negative Poisson’s ratio yarns Interlaced yarn sensors Smart glove Deep learning Sign-language translation
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Tailoring the Meso-Structure of Gold Nanoparticles in Keratin-Based Activated Carbon Toward High-Performance Flexible Sensor 被引量:6
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作者 Aniruddha BPatil Zhaohui Meng +9 位作者 ronghui wu Liyun Ma Zijie Xu Chenyang Shi wu Qiu Qiang Liu Yifan Zhang Youhui Lin Naibo Lin Xiang Yang Liu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2020年第9期136-146,共11页
Flexible biosensors with high accuracy and reliable operation in detecting pH and uric acid levels in body fluids are fabricated using well-engineered metaldoped porous carbon as electrode material.The gold nanopartic... Flexible biosensors with high accuracy and reliable operation in detecting pH and uric acid levels in body fluids are fabricated using well-engineered metaldoped porous carbon as electrode material.The gold nanoparticles@N-doped carbon in situ are prepared using wool keratin as both a novel carbon precursor and a stabilizer.The conducting electrode material is fabricated at 500℃ under customized parameters,which mimics A-B type(two different repeating units) polymeric material and displays excellent deprotonation performance(pH sensitivity).The obtained pH sensor exhibits high pH sensitivity of 57 mV/pH unit and insignificant relative standard deviation of 0.088%.Conversely,the composite carbon material with sp^2 structure prepared at 700℃ is doped with nitrogen and gold nanoparticles,which exhibits good conductivity and electrocatalytic activity for uric acid oxidation.The uric acid sensor has linear response over a range of 1-150 μM and a limit of detection 0.1 μM.These results will provide new avenues where biological material will be the best start,which can be useful to target contradictory applications through molecular engineering at mesoscale. 展开更多
关键词 Wool keratin Structure engineering Metal nanoparticle carbon composite Health monitoring Flexible biosensor
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Palladium nanoparticles/wool keratin-assisted carbon composite-modified flexible and disposable electrochemical solid-state pH sensor 被引量:1
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作者 Wenli Zhang Xiaotian Liu +8 位作者 Youhui Lin Liyun Ma Linqing Kong Guangzong Min ronghui wu Sharwari K.Mengane Likun Yang Aniruddha B.Patil Xiang Yang Liu 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第2期634-640,共7页
Several p H-dependent processes and reactions take place in the human body;hence,the p H of body fluids is the best indicator of disturbed health conditions.However,accurate and real-time diagnosis of the p H of body ... Several p H-dependent processes and reactions take place in the human body;hence,the p H of body fluids is the best indicator of disturbed health conditions.However,accurate and real-time diagnosis of the p H of body fluids is complicated because of limited commercially available p H sensors.Hence,we aimed to prepare a flexible,transparent,disposable,userfriendly,and economic strip-based solid-state p H sensor using palladium nanoparticles(Pd NPs)/N-doped carbon(NC)composite material.The Pd NPs/NC composite material was synthesized using wool keratin(WK)as a precursor.The insitu prepared Pd NPs played a key role in the controlled switching of protein structure to the N-doped carbon skeleton withπ–πarrangement at the mesoscale level,which mimics the A–B type polymeric structure,and hence,is highly susceptible to H+ions.The optimized carbonization condition in the presence of Pd NPs showed that the material obtained using a modified Ag/Ag Cl reference electrode had the highest p H sensitivity with excellent stability and durability.The optimized p H sensor showed high specificity and selectivity with a sensitivity of 55 m V/p H unit and a relative standard deviation of 0.79%.This study is the first to synthesize Pd NPs using WK as a stabilizing and reducing agent.The applicability of the sensor was investigated for biological samples,namely,saliva and gastric juices.The proposed protocol and material have implications in solid-state chemistry,where biological material will be the best choice for the synthesis of materials with anticipated performance. 展开更多
关键词 palladium nanoparticle electrochemical sensor solid-state pH sensor flexible strip sensor
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Woven fabric triboelectric nanogenerators for human-computer interaction and physical health monitoring 被引量:1
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作者 Yu Miao Mengjuan Zhou +7 位作者 Jia Yi Yanyan Wang Guangjin Tian Hongxia Zhang Wenlong Huang Wenhao Wang ronghui wu Liyun Ma 《Nano Research》 SCIE EI CSCD 2024年第6期5540-5548,共9页
Triboelectric nanogenerator(TENG)converts mechanical energy into valuable electrical energy,offering a solution for future energy needs.As an indispensable part of TENG,textile TENG(T-TENG)has incredible advantages in... Triboelectric nanogenerator(TENG)converts mechanical energy into valuable electrical energy,offering a solution for future energy needs.As an indispensable part of TENG,textile TENG(T-TENG)has incredible advantages in harvesting biomechanical energy and physiological signal monitoring.However,the application of T-TENG is restricted,partly because the fabric structure parameter and structure on T-TENG performance have not been fully exploited.This study comprehensively investigates the effect of weaving structure on fabric TENGs(F-TENGs)for direct-weaving yarn TENGs and post-coating fabric TENGs.For direct-weaving F-TENGs,a single-yarn TENG(Y-TENG)with a core-sheath structure is fabricated using conductive yarn as the core layer yarn and polytetrafluoroethylene(PTFE)filaments as the sheath yarn.Twelve fabrics with five different sets of parameters were designed and investigated.For post-coating F-TENGs,fabrics with weaving structures of plain,twill,satin,and reinforced twill were fabricated and coated with conductive silver paint.Overall,the twill F-TENGs have the best electrical outputs,followed by the satin F-TENGs and plain weave F-TENGs.Besides,the increase of the Y-TENG gap spacing was demonstrated to improve the electrical output performance.Moreover,T-TENGs are demonstrated for human-computer interaction and self-powered real-time monitoring.This systematic work provides guidance for the future T-TENG’s design. 展开更多
关键词 single-yarn triboelectric nanogenerators woven fabric triboelectric nanogenerators fabric weaving structures and parameters human-computer interaction physical health monitoring
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Stretchable spring-sheathed yarn sensor for 3D dynamic body reconstruction assisted by transfer learning 被引量:1
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作者 ronghui wu Liyun Ma +14 位作者 Zhiyong Chen Yating Shi Yifang Shi Sai Liu Xiaowei Chen Aniruddha Patil Zaifu Lin Yifan Zhang Chuan Zhang Rui Yu Changyong Wang Jin Zhou Shihui Guo Weidong Yu Xiang Yang Liu 《InfoMat》 SCIE CSCD 2024年第4期109-123,共15页
A wearable sensing system that can reconstruct dynamic 3D human body models for virtual cloth fitting is highly important in the era of information and metaverse.However,few research has been conducted regarding confo... A wearable sensing system that can reconstruct dynamic 3D human body models for virtual cloth fitting is highly important in the era of information and metaverse.However,few research has been conducted regarding conformal sen-sors for accurately measuring the human body circumferences for dynamic 3D human body reshaping.Here,we develop a stretchable spring-sheathed yarn sensor(SSYS)as a smart ruler,for precisely measuring the circumference of human bodies and long-term tracking the movement for the dynamic 3D body reconstruction.The SSYS has a robust property,high resilience,high stability(>18000),and ultrafast response(12 ms)to external deformation.It is also washable,wearable,tailorable,and durable for long-time wearing.Moreover,geometric,and mechanical behaviors of the SSYS are systematically investigated both theoretically and experimentally.In addition,a transfer learning algorithm that bridges the discrepancy of real and virtual sensing performance is devel-oped,enabling a small body circumference measurement error of 1.79%,notice-ably lower than that of traditional learning algorithm.Furtherly,3D human bodies that are numerically consistent with the actual bodies are reconstructed.The 3D dynamic human body reconstruction based on the wearing sensing sys-tem and transfer learning algorithm enables excellent virtual fitting and shirt customization in a smart and highly efficient manner.This wearable sensing technology shows great potential in human-computer interaction,intelligent fitting,specialized protection,sports activities,and human physiological health tracking. 展开更多
关键词 3D body reconstruction remote personalized clothes customization transfer learning wearable sensing system yarn sensor array
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Multiscale engineered hydrogel for solar evaporation with enhanced water transport and purification
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作者 Mingzhan Wang ronghui wu Shuang Zheng 《Science China Materials》 SCIE EI CAS CSCD 2024年第8期2709-2710,共2页
Solar evaporation is emerging as a powerful solution to alleviate the global water shortage challenge.In a recent work published in Nature Water,Liangti Qu and coworkers[1]report a facile method of preparing a graphen... Solar evaporation is emerging as a powerful solution to alleviate the global water shortage challenge.In a recent work published in Nature Water,Liangti Qu and coworkers[1]report a facile method of preparing a graphene/alginate hydrogel(GAH),which not only possesses nearly total rejections to salts,volatile and non-volatile organic compounds,but also exhibits excellent antifouling properties to bacteria and oil.From the perspective of chemistry,these impressive properties originate from the systematic engineering of the GAH,ranging from the molecular scale to the macroscopic scale. 展开更多
关键词 VOLATILE HYDROGEL PREPARING
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Silk Fibroin Based Conductive Film for Multifunctional Sensing and Energy Harvesting 被引量:9
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作者 Xiaoyu Dong iang Liu +2 位作者 Sai Liu ronghui wu Liyun Ma 《Advanced Fiber Materials》 SCIE EI 2022年第4期885-893,共9页
Development of biomaterial based flexible electronics has got intensive attention owing to the potential applications in the wearable and epidermal devices.Silk fibroin,as a natural textile material with excellent per... Development of biomaterial based flexible electronics has got intensive attention owing to the potential applications in the wearable and epidermal devices.Silk fibroin,as a natural textile material with excellent performance,has been widely concerned by industry and academy.However,the property of electrical insulation limits his development in the field of flexible electronics.In this paper,a regenerated silk fibroin/carbon nanotube(RSF/CNT)conductive film has been successfully fabricated and applied in flexible capacitive-type pressure sensor and wearable triboelectric nanogenerator by a facile method.The electrical conductivity and mechanical property of RSF/CNT film was optimized by investigating with different composite ratio from 10 to 90%(W_(RSF)/W_(CNT)).The RSF/CNT film has a good photothermal response and electric heating performance.We furtherly demonstrated that the RSF/CNT based sensor can be used as epidermal self-powered sensor for multifunction human motion monitoring and Morse code compilation.The observed research results have shown that the RSF/CNT film has a wide range of potential application prospects in the wearable electronics field. 展开更多
关键词 Silk fibroin based material Composite conductive film Capacitive-type pressure sensor Triboelectric nanogenerator Self-powered sensor
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