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Colloidal Matter and the Road to Trainable Materials
Colloidal Matter and the Road to Trainable Materials
상세정보
- 자료유형
- 학위논문 서양
- 최종처리일시
- 20250211153025
- ISBN
- 9798346857099
- DDC
- 530
- 서명/저자
- Colloidal Matter and the Road to Trainable Materials
- 발행사항
- [Sl] : Northwestern University, 2024
- 발행사항
- Ann Arbor : ProQuest Dissertations & Theses, 2024
- 형태사항
- 266 p
- 주기사항
- Source: Dissertations Abstracts International, Volume: 86-06, Section: B.
- 주기사항
- Advisor: Olvera de la Cruz, Monica.
- 학위논문주기
- Thesis (Ph.D.)--Northwestern University, 2024.
- 초록/해제
- 요약The ability to create matter through the manipulation of single atoms remains elusive. This is due to the high energetic cost of manipulating single atoms and the complexity of chemical bonding. Thus the scientific and engineering community has moved towards creating matter using larger subunits that are easier to manipulate and functionalize. These colloidal systems, comprised of nanometer to micrometer sized particles, have been employed to create colloidal materials that have been shown to be analogs to atomic solids and hard condensed matter systems. However, considering how tunable these subunits have become, there is evidence that colloidal matter can be designed to have properties that resemble a sense of trainability, which has been assumed to be exclusive to animate matter. Training in materials consists of tuning a material's response by a cyclic exposure to an external stimulus, each cycle leading to a reconfiguration of its internal degrees of freedom. Exploiting this behavior can lead to a new paradigm for materials design. In this work we focus on the internal degrees of freedom of different colloidal systems to gain an empirical understanding of the requirements needed for trainable synthetic materials.
- 일반주제명
- Physics
- 일반주제명
- Materials science
- 일반주제명
- Particle physics
- 키워드
- Chemical bonding
- 키워드
- Atomic solids
- 기타저자
- Northwestern University Materials Science and Engineering
- 기본자료저록
- Dissertations Abstracts International. 86-06B.
- 전자적 위치 및 접속
- 로그인 후 원문을 볼 수 있습니다.
MARC
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■00520250211153025
■006m o d
■007cr#unu||||||||
■020 ▼a9798346857099
■035 ▼a(MiAaPQ)AAI31633462
■040 ▼aMiAaPQ▼cMiAaPQ
■0820 ▼a530
■1001 ▼aLopez de la Cerda Rios, Hector Manuel.
■24510▼aColloidal Matter and the Road to Trainable Materials
■260 ▼a[Sl]▼bNorthwestern University▼c2024
■260 1▼aAnn Arbor▼bProQuest Dissertations & Theses▼c2024
■300 ▼a266 p
■500 ▼aSource: Dissertations Abstracts International, Volume: 86-06, Section: B.
■500 ▼aAdvisor: Olvera de la Cruz, Monica.
■5021 ▼aThesis (Ph.D.)--Northwestern University, 2024.
■520 ▼aThe ability to create matter through the manipulation of single atoms remains elusive. This is due to the high energetic cost of manipulating single atoms and the complexity of chemical bonding. Thus the scientific and engineering community has moved towards creating matter using larger subunits that are easier to manipulate and functionalize. These colloidal systems, comprised of nanometer to micrometer sized particles, have been employed to create colloidal materials that have been shown to be analogs to atomic solids and hard condensed matter systems. However, considering how tunable these subunits have become, there is evidence that colloidal matter can be designed to have properties that resemble a sense of trainability, which has been assumed to be exclusive to animate matter. Training in materials consists of tuning a material's response by a cyclic exposure to an external stimulus, each cycle leading to a reconfiguration of its internal degrees of freedom. Exploiting this behavior can lead to a new paradigm for materials design. In this work we focus on the internal degrees of freedom of different colloidal systems to gain an empirical understanding of the requirements needed for trainable synthetic materials.
■590 ▼aSchool code: 0163.
■650 4▼aPhysics
■650 4▼aMaterials science
■650 4▼aParticle physics
■653 ▼aChemical bonding
■653 ▼aSynthetic materials
■653 ▼aColloidal materials
■653 ▼aAtomic solids
■690 ▼a0794
■690 ▼a0605
■690 ▼a0798
■71020▼aNorthwestern University▼bMaterials Science and Engineering.
■7730 ▼tDissertations Abstracts International▼g86-06B.
■790 ▼a0163
■791 ▼aPh.D.
■792 ▼a2024
■793 ▼aEnglish
■85640▼uhttp://www.riss.kr/pdu/ddodLink.do?id=T17164629▼nKERIS▼z이 자료의 원문은 한국교육학술정보원에서 제공합니다.


